ANIMALS NATURALLY PROVIDED WITH DWELLINGS — ANIMALS
WHO INCREASE THEIR NATURAL PROTECTION BY
THE ADDITION OF FOREIGN BODIES — ANIMALS WHO
ESTABLISH THEIR HOME IN THE NATURAL OR ARTIFICIAL
DWELLINGS OF OTHERS — CLASSIFICATION OF
ARTIFICIAL SHELTERS — HOLLOWED DWELLINGS — RUDIMENTARY
BURROWS — CAREFULLY-DISPOSED BURROWS — BURROWS
WITH BARNS ADJOINED — DWELLINGS
HOLLOWED OUT IN WOOD — WOVEN DWELLINGS — RUDIMENTS
OF THIS INDUSTRY — DWELLINGS FORMED
OF COARSELY-ENTANGLED MATERIALS — DWELLINGS
WOVEN OF FLEXIBLE SUBSTANCES — DWELLINGS WOVEN
WITH GREATER ART — THE ART OF SEWING AMONG
BIRDS — MODIFICATIONS OF DWELLINGS ACCORDING TO
SEASON AND CLIMATE — BUILT DWELLINGS — PAPER
NESTS — GELATINE NESTS — CONSTRUCTIONS BUILT OF
EARTH — SOLITARY MASONS — MASONS WORKING IN
ASSOCIATION — INDIVIDUAL SKILL AND REFLECTION — DWELLINGS
BUILT OF HARD MATERIALS UNITED BY
MORTAR — THE DAMS OF BEAVERS.
Animals construct dwellings either to protect
themselves from the cold, heat, rain, and other chances
of the weather, or to retire to at moments when the
search for food does not compel them to be outside
and exposed to the attacks of enemies. Some inhabit
these refuges permanently; others only remain there
during the winter; others, again, who live during the
rest of the year in the open air set up dwellings to
bring forth their young, or to lay their eggs and rear
the offspring. Whatever the object may be for which
these retreats are built, they constitute altogether
various manifestations of the same industry, and I
will class them, not according to the uses which they
are to serve, but according to the amount of art
displayed by the architect.
In this series, as in those which we have already
studied, we shall find every stage from that of beings
provided for by nature, and endowed with a special
organ which secretes for them a shelter, up to those
who are constrained by necessity to seek in their own
intelligence an expedient to repair the forgetfulness
of nature. These productions, so different in their
origin, can only be compared from the point of view
of the part they play; there are analogies between
them but not the least homology.
Animals naturally provided with dwellings. — Nearly
all the Mollusca are enveloped by a very hard calcareous
case, secreted by their mantle: this shell, which
is a movable house, they bear about with them and
retire into at the slightest warning.
Caterpillars which are about to be transformed into
chrysalides weave a cocoon, a very close dwelling in
which they can go through their metamorphosis far
from exterior troubles. It is an organic form of
dwelling, or produced by an organ. It is not necessary
to multiply examples of this kind; they are extremely
numerous. In the same category must be ranged
the cells issuing from the wax-glands which supply
Bees with materials for their combs in which they
enclose the eggs of the queen with a provision of
honey.
I do not wish to insist on creations of this kind
which are independent of the animal’s will and reflection.
Near these facts must be placed those in
which animals, still using a natural secretion, yet
endeavour to obtain ingenious advantages from it
unknown by related species.
There is, for example, the Macropus viridi-auratus,
or Paradise-fish, which blows air bubbles in the mucus
produced from its mouth. This mucus becomes fairly
resistant, and all the bubbles imprisoned and sticking
aside by side at last form a floor. It
is beneath this floating shelter that
the fish suspends its eggs for its
little ones to undergo their early
development.
Animals who increase their natural
protection by the addition of
foreign bodies. — Certain tubicolar
Annelids, whose skin furnishes
abundant mucus which does not
become sufficiently hard to form an efficacious protection,
utilise it to weld together and unite around
them neighbouring substances, grains of sand, fragments
of shell, etc. They thus construct a case
which both resembles formations by special organs
and manufacture by the aid of foreign materials.
The larvæ of Phryganea, who lead an aquatic life, use
this method to separate themselves from the world
and prepare tubes in which to dwell. (Fig. 18.)
All the fragments carried down by the stream are
good for their labours on condition only that they are
denser than the water. They take possession of
fragments of aquatic leaves, and little fragments of
wood which have been sufficiently long in the water
to have thoroughly imbibed it and so become heavy
enough to keep themselves at the bottom, or at least
to prevent them from floating to the surface. It is
the larva of Phryganea striata which has been best
studied; those of neighbouring species evidently act
much in the same way, with differences only in detail.
The little carpenter stops a fragment rather longer
than his own body, lies on it and brings it in contact
with other pieces along his own sides. He thus
obtains the skeleton of a cylinder. The largest holes
are filled up with detritus of all kinds. Then these
materials are agglutinated by a special secretion.
The larva overlays the interior of its tube with a
covering of soft silk which renders the cylinder watertight
and consolidates the earlier labours. The insect
is thus in possession of a safe retreat. Resembling
some piece of rubbish, it completes its metamorphosis
in peace, undisturbed by the carnivora of the stream.
There is here already a tendency towards the dwellings
of which I shall speak later on, and which are entirely
formed of the external environment.
Animals who establish their home in the natural
or artificial dwellings of others. — Between the beings
whom nature has endowed with a shelter and those
who construct it by their own industry, we may
intercept those who, deprived of a natural asylum and
not having the inclination or the power to make one,
utilise the dwellings of others, either when the latter
still inhabit them, or when they are empty on account
of the death or departure of the owner. In the
natural sciences there is no group of facts around
which may be traced a clear boundary; each of them
is more or less closely related to a group which
appears at first of an entirely different nature. Thus
it does not enter into our plan to speak of parasites.
Yet, if among these some turn to a host to demand
of him both food and shelter, if even they can come
to be so modified and so marked by parasitism that
they can live in no other way, there are others who
ask for lodging only from an animal better protected
than they are themselves. It is these whose customs
we are called upon to consider. In the interior of the
branchial chamber of many bivalvular Mollusca, and
especially the Mussel, there lives a little crustaceous
commensal called the Pea-crab (Pinnoteres pisum).
He goes, comes, hunts, and retires at the least alarm
within his host’s shell. The mussel, as the price of its
hospitality, no doubt profits by the prizes which fall
to the little crab’s claws. It is even said that the crab
in recognition of the benefits bestowed by his indolent
friend keeps him acquainted with what is passing
on around, and as he is much more active and alert
than his companion he sees danger much farther
away, and gives notice of it, asking for the door to be
shut by lightly pinching the mussel’s gill. But this
gratitude of the Crustacean towards a sympathetic
bivalve is merely a hypothesis; we do not exactly
know what passes in the intimacy of these two
widely-differing natures.
For birds like the Cuckoo and the Molothrus it is
not possible to plead attenuating circumstances.
They occupy a place in an inhabited house without
paying any sort of rent. Every one knows the
Cuckoo’s audacity. The female lays her eggs in
different nests and troubles herself no further about
their fate. She seeks for her offspring a shelter which
she does not take the trouble to construct, and moreover
at the same time assures for them the cares of a
stranger in place of her own.
In North America a kind of Starling, the Molothrus
pecoris, commonly called the Cow-bird, acts in the
same careless fashion. It lives in the midst of herds,
and owes its specific name to this custom; it feeds on
the parasites on the skin of cattle. This bird constructs
no nest. At the moment of laying the female
seeks out an inhabited dwelling, and when the owner
is absent she furtively lays an egg there. The young
intruder breaks his shell after four days’ incubation,
that is to say, usually much before the legitimate
children; and the parents, in order to silence the beak
of the stranger who, without shame, claims his share
with loud cries, neglect their own brood which have
not yet appeared, and which they abandon. Their
foster children repay them, however, with the blackest
ingratitude. As soon as the little Molothrus feels his
body covered with feathers and his little wings strong
enough to sustain him he quits his adopted parents
without consideration. These birds show a love of
independence very rare among animals, with whom
conjugal fidelity has become proverbial; they do not
unite in couples; unions are free, and the mother
hastens to deliver herself from the cares of bringing
up her young in the manner we have seen. Two
other species of Molothrus have the same habit, as have
the American Cuckoo and the Golden Cuckoo of
South Africa.
The habits of the Molothrus bovariensis, a closely
allied Argentine Cow-bird, have been carefully studied
by Mr. W. H. Hudson, who has also some interesting
remarks as to the vestiges of the nesting instinct in
this interesting parasitical bird, which now is constantly
dropping eggs in all sorts of places, even
on the ground, most of them being lost. “Before and
during the breeding-season the females, sometimes
accompanied by the males, are seen continually
haunting and examining the domed nests of the
Dendrocolaptidæ. This does not seem like a mere
freak of curiosity, but their persistence in their
investigations is precisely like that of birds that
habitually make choice of such breeding-places. It
is surprising that they never do actually lay in such
nests, except when the side or dome has been accidentally
broken enough to admit the light into the
interior. Whenever I set boxes up in my trees, the
female Cow-birds were the first to visit them. Sometimes
one will spend half a day loitering about and
inspecting a box, repeatedly climbing round and over
it, and always ending at the entrance, into which she
peers curiously, and when about to enter starting
back, as if scared at the obscurity within. But after
retiring a little space she will return again and again,
as if fascinated by the comfort and security of such
an abode. It is amusing to see how pertinaciously
they hang about the ovens of the Oven-birds, apparently
determined to take possession of them,
flying back after a hundred repulses, and yet not
entering them even when they have the opportunity.
Sometimes one is seen following a Wren or a Swallow
to its nest beneath the eaves, and then clinging to
the wall beneath the hole into which it disappeared.
That it is a recurrence to a long-disused habit I can
scarcely doubt. I may mention that twice I have
seen birds of this species attempting to build nests,
and that on both occasions they failed to complete
the work. So universal is the nest-making instinct
that one might safely say the M. bovariensis had once
possessed it, and that in the cases I have mentioned
it was a recurrence, too weak to be efficient, to the
ancestral habit.” Mr. Hudson suggests that this bird
lost the nest-making instinct by acquiring the semi-parasitical
habit, common to many South American
birds, of breeding in the large covered nests of the
Dendrocolaptidæ, although, owing to increased severity
in the struggle for the possession of such nests, this
habit was defeated.81
The Rhodius anarus, a fish of European rivers, also
ensures a quiet retreat for his offspring by a method
which is not less indiscreet. At the period of spawning,
a male chooses a female companion and with
great vigilance keeps off all those who wish to
approach her. When the laying becomes imminent,
the Rhodius, swimming up and down at the bottom
of the stream, at length discovers a Unio. The
bivalve is asleep with his shell ajar, not suspecting
the plot which is being formed against him. It is a
question of nothing less than of transforming him
into furnished lodgings. The female fish bears underneath
her tail a prolongation of the oviduct; she
introduces it delicately between the Mollusc’s valves
and allows an egg to fall between his branchial folds.
In his turn the male approaches, shakes himself over
it, and fertilises it. Then the couple depart in search
of another Unio, to whom to confide another representative
of the race. The egg, well sheltered against
dangers from without, undergoes development, and
one fine day the little fish emerges and frisks away
from his peaceful retreat.
Other animals, more respectful of property, avoid
using another’s dwelling until it is abandoned by its
proprietor, and no reproach of indelicacy can be
addressed to the Gobius minutus, a fish which lives
on our coasts at the mouth of rivers. The female lays
beneath overturned shells, remains of Oysters, or
Cardium shells. The valve is buried beneath several
centimetres of sand, which supports it like a vault. It
forms a solid roof, beneath which the eggs undergo
their evolution. Sometimes the male remains by the
little chamber to watch over their fate. It is possible
to distinguish the two holes of entrance and exit
which mark his habitual passage.
The Hermit-crab perhaps knows best how to take
advantage of old clothes. (Fig. 19.) He collects
shells of Gasteropods, abandoned flotsam, the first
inhabitant of which has died. The Hermit-crab
(Pagurus Bernhardus) is a Decapod Crustacean — that
is to say, he resembles a very small Crab.
But his inveterate habit during so many generations
of sheltering his abdomen in a shell prevents this
part from being encrusted with lime and becoming
hard. The legs and the head remain in the
ordinary condition outside the house, and the
animal moves bearing it everywhere with him; on
the least warning he retires into it entirely. But
the Crustacean grows. When young he had chosen
a small shell. A Mollusc, in growing, makes his
house grow with him. The Hermit-crab cannot do
this, and when his dwelling has become too narrow
he abandons it for one that is more comfortable.
At first enclosed in the remains of a Trochus, he
changes into that of a Purpura; a little later he seeks
asylum in a Whelk. Beside the shelter which these
shells assure to the Crustacean, they serve to mask
his ferocity, and the prey which approaches confidently
what it takes to be an inoffensive Mollusc,
becomes his victim.
The Great Horned Owl likewise does not construct
a nest; but takes possession of the dwellings
abandoned by others. These birds utilise for laying
their eggs sometimes the nest of a Crow or a Dove,
sometimes the lair which a Squirrel had considered
too dilapidated. The female, without troubling
about the bad state of these ruins, or taking pains
to repair them, lays her eggs here and sits on
them.
Classification of artificial shelters. — It is time to
turn to animals who have more regard for comfort,
and who erect dwellings for themselves or their
offspring. These dwellings may be divided into three
groups: (1) Those which are hollowed in earth or in
wood; (2) those which in the simplest form result
from the division of material of any kind; then, as a
complication, of materials bound together; then, as
a last refinement, of delicate materials, such as blades
of grass or threads of wool woven together; such are
the nests of certain birds and the tents of nomads;
(3) those which are built of moist earth which
becomes hard on drying; the perfection of this
method consists of piling up hard fragments, pieces
of wood or ashlar, the moist earth being only a
mortar which unites the hard parts together. Animals
exercise with varying success these different methods,
all of which Man still practises.
Hollowed dwellings — Rudimentary burrows. — We
will first occupy ourselves with the dwelling hollowed
in the earth. It is the least complicated form. The
number of creatures who purely and simply bury
themselves thus to obtain shelter is incalculable; I
will only mention a few examples, and pass on from
simple combinations to the more perfected industries,
of which they present the first sketch.
It is known that at a certain epoch of the year
Crabs abandon their hard carapaces. This phenomenon
is known by the name of the moult; they
remain in this condition for some time; it is the
period during which they grow; then their integuments
are encrusted anew with lime and again become
resistant. While they are thus deprived of their
ordinary protection they are exposed to a crowd of
dangers, and they are so well aware of this that they
remain hidden beneath rocks and pebbles. A crab
of Guadeloupe, called Gecarinus ruricola, escapes the
perils of this situation, thanks to its kind of life and
its habit of hollowing out a burrow to live in while it
is deprived of its habitual defence. This Crustacean
lives on the earth, at a distance of about ten or twelve
kilometres from the sea-shore, and nourishes itself on
animal and vegetable remains. It approaches the
water only at the period of laying eggs, turning
towards the coast in the months of February and
March. This migration does not take place, like some
others, in compact bands; each follows the road in
independence, and preserves a certain amount of
liberty with regard to the path and the epoch of the
journey. They lead an aquatic life till May or June;
then the female abandons her little ones, who had
begun their development attached to her claws, and
they return to land. The moult takes place in
August. At the approach of this dreaded crisis each
hollows a hole between two roots, supplies it with
green leaves, and carefully stops up the entrance.
These labours accomplished, the crab is entirely
sheltered; it undergoes the moult in safety, and does
not emerge from its retreat until it is again capable of
facing enemies, and of seizing food with its claws,
which have become hard again. This seclusion
appears to last a month. Here is, then, an example of
a temporary dwelling rendered necessary by special
conditions of defect for external life. We are here
still in the infancy of the art.
Speaking generally, birds are accomplished architects.
Certain of them are, however, content with a
rudimentary cavern. There is no question here of
those who retire to clefts in the rock or in trunks of
trees, for in these cases the cavity is only the support
of the true house, and it is in the construction of this
that the artist reveals his talent. I wish to speak of
animals which remain in a burrow without making a
nest there. A Parroquet of New Zealand called the
Kakapo (Strigops habroptilus) thus dwells in natural
or hollowed excavations. It is only found in a
restricted portion of the island and leads a miserable
life there, habitually staying in the earth and pursued
by numerous enemies, especially half-wild dogs. It
tries to hold its own, but its wings and beak do not
suffice to protect it, and the race would have completely
disappeared if these birds were not able to
resist, owing to the prudence with which they stay
within their dwellings. They profit by a natural
retreat, or one constructed in rocks or beneath roots
of trees; they only come out when impelled by
hunger, and return as soon as they can in case of
danger.
A large number of animals also hollow out shelters
for their eggs, with the double object of maintaining
them at a constant temperature and of concealing
them. Most reptiles act in this manner. The way
in which a Tortoise, the Cistudo lunaria, prepares its
nest is extremely curious. When the time for this
labour arrives, the tortoise chooses a site. It commences
by boring in the earth with the end of its tail,
the muscles of which are held firmly contracted; it
turns the tail like a gimlet and succeeds in making a
conical hole. Gradually the depth of the hole becomes
equal to the length of the tail, and the tool then
becomes useless. The Cistudo enlarges the cavity
with the help of its posterior legs. Using them
alternately it withdraws the earth and kicks it away,
then piles up this rubbish on the edge of the hole,
arranging it so as to form a circular rampart. Soon
the posterior members can take nothing more from
the too distant bottom. The moment for laying has
now come. As soon as the egg arrives at the cloaca
one of the feet seizes it and lowers it gently into
the nest, while the second foot seizes another egg,
which during this time had appeared at the orifice.
This manipulation lasts until the end of the operation,
when the tortoise buries all its family, and
to flatten the prominence which results she strikes
it repeatedly with her plastron, raising herself on
her legs.
It is not only land animals which adopt this custom
of living in the earth, and there sheltering their offspring.
Fish also make retreats on the bank or at
the bottom. To mention only one case, the Bullhead
(Cottus gobio) of our rivers, which spawns in the Seine
in May, June, and July, acts in this manner. Beneath
a rock in the sand it prepares a cavity; then seeks
females and brings them to lay eggs in its little
lodging. During the four or five weeks before they
come out it watches the eggs, keeping away as far as
possible every danger which threatens them. It only
leaves its position when pressed by hunger, and as
soon as the hunt is concluded, returns to the post of
duty.
Other animals when digging have a double object;
they wish to shelter themselves, and at the same time
to find the water which they need for themselves or
for the development of their young.
It is well known that Frogs and Toads generally go
in the spring to lay their eggs in streams and ponds.
A Batrachian of Brazil and the hot regions of South
America, the Cystignathus ocellatus, no doubt fearing
too many dangers for the spawn if deposited in the
open water, employs the artifice of hollowing, not far
from the bank, a hole the bottom of which is filled by
infiltration. It there places its eggs, and the little
ones on their birth can lead an aquatic life while
being guaranteed against its risks.
A terrestrial Crab, the Cardisoma carnifex, found
in Bengal and the Antilles, acts in the same manner;
but in this case it has in view its own convenience
and not care for its offspring. Its habitat is especially
in low-lying spots near the shore, where water may
be found at a trifling depth beneath the soil. To
establish its dwelling, the Crustacean first buries itself
until it reaches the liquid level. Arrived at this point,
it makes a large lair in the soft soil, and effects communication
with the outside by various openings. It
can thus easily come and go and retire into its cave,
where it finds security and a humidity favourable for
branchial respiration. From time to time it cleans
out the dirt and rubbish which accumulate in the
hole. It makes a little pile of all the refuse which it
finds, and, seizing it between its claws and abdomen,
carries it outside. Executing several journeys very
rapidly, it soon clears out its dwelling.
The dipnoid Protopterus, which inhabits the
marshes of Senegal and Gambia, is curious in more
than one respect. Firstly, it can breathe oxygen,
whether, like other fish, it finds it dissolved in water
or in the atmospheric air. When during the summer
the marshes in which it lives dry up, it takes refuge
in the mud at the bottom, which hardens and imprisons
it, and it thus remains curled up until the
time when the water after the rainy season has
softened the earth which surrounds it. This fact had
been known for some time; travellers had brought
back lumps of dried earth of varied size, the largest
about as big as two fists. On opening them the
same fish was always found within, and the chamber
in which it is contained was lined with a sort of
cocoon, having the appearance of dry gelatine.
Duméril was able to observe one of these animals
in captivity. At the period corresponding to the
dry period of its own country, the Protopterus buried
itself in the mud which had been placed at the bottom
of the aquarium. In order to realise the conditions
found in nature, the water which covered it was
gradually withdrawn. The earth hardened in drying,
and when broken the recluse was seen surrounded by
hardened mucus, exactly like those which came from
Senegal.
Carefully-disposed burrows. — All the cases which we
have considered show us the industry of the hollowed
dwelling in its primitive state; but other animals
know how to furnish it with greater luxury. I will
continue in the same order of increasing complication.
Many beings live permanently in a burrow;
Reptiles — Snakes or Lizards — are to be placed among
these. Among others, the Lacerta stirpium arranges
a narrow and deep hole, well hidden beneath a thicket,
and retires into it for the winter, when cold renders
it incapable of movement and at the mercy of its
enemies. Before giving itself up to its hybernal sleep,
it is careful to close hermetically the opening of the
dwelling with a little earth and dried leaves. When
spring returns and the heat awakens the reptile, it comes
out to warm itself and to hunt, but never abandons
its dwelling, always retiring into it in case of alarm
and to pass there cold days and nights.
Darwin has observed and described82 how a little
Lacertilian, the Conolophus subcristatus, conducts its
work of mining and digging. It establishes its burrow
in a soft tufa, and directs it almost horizontally,
hollowing it out in such a way that the axis of the
hole makes a very small angle with the soil. This
reptile does not foolishly expend its strength in this
troublesome labour. It only works with one side of
its body at a time, allowing the other side to rest.
For instance, the right anterior leg sets to work
digging, while the posterior leg on the same side
throws out the earth. When fatigued, the left legs
come into play, allowing the others to repose.
Other animals, without building their cavern with
remarkable skill, show much sagacity in the choice of
a site calculated to obtain certain determined advantages.
In Egypt there are dogs which have become
wild. Having shaken off the yoke of man, which
in the East affords them little or no support, they
lead an independent life. During the day they
remain quiescent in desert spots or ruins, and at night
they prowl about like jackals, hunting living prey or
feeding on abandoned carcasses. There are hills
which have in a manner become the property of
these animals. They have founded villages there,
and allow no one to approach. These hills have an
orientation from north to south, so that one slope is
exposed to the sun from morning to mid-day and the
other from mid-day to evening. Now, dogs have a
great horror of heat. They fear the torrid heat of
the south as much as in our climate they like to lie
warmed by gentle rays; there is no shadow too deep
for their siesta. Therefore, on these Egyptian hills
every dog hollows out a lair on both slopes. One of
these dwellings is thus turned towards the east, the
other towards the west. In the morning, when he
returns from his nocturnal expeditions, the animal
takes refuge in the second, and remains there until
mid-day, sunk in refreshing sleep. At that hour the
sun begins to reach him, and to escape it he passes
over to the opposite slope; it is a curious sight to see
them all, with pendent heads and sleepy air, advance
with trailing steps to their eastern retreat, settle down
in it, and continue their dream and their digestion
till evening, when they again set forth to prowl. We
never grow tired of admiring the intelligence of their
domesticated fellows, but this trait seems to me worthy
of remark; it proves a very developed power of observation
and reflection.
The Trap-door Spiders of the south of Europe
construct burrows which have been studied with great
care and in much detail by Moggridge.83 He found
that there were four chief types of burrow, shown in
the accompanying illustration (Fig. 20) at about one-third
the actual size (except C1 and D1, which are of
natural size). While A and B have only one door, C
and D, besides the surface door, have another a short
way under ground. The whole burrow as well as the
door are lined with silk, which also forms the hinge.
The great art of the Trap-door Spider lies in her
skilful forming of the door, which fits tightly, although
it opens widely when she emerges, and which she
frequently holds down
when an intruder
strives to enter, and in
the manner with which
the presence of the
door is concealed, so
as to harmonise with
surrounding objects.
Perhaps in no case is
the concealment more
complete than when
dead leaves are employed
to cover the
door. In some cases
a single withered olive
leaf is selected, and it
serves to cover the
entrance; in other
cases several are woven together with bits of wood
or roots, as in the accompanying illustration, which
represents such a door when open and when shut.
(Fig. 21.)
The Trap-door Spider (Mygale henzii, Girard),
which is widely diffused in California, forms a simple
shaft-like burrow, but, like the European Trap-door
Spider, it is very skilful in forming an entrance and
in concealing its presence. Its habits have lately
been described by D. Cleveland of San Diego.84 In
the adobe land hillocks are numerous; they are about
a foot in height, and some three or four feet in
diameter. These hillocks are selected by the spiders — apparently
because they afford excellent drainage,
and cannot be washed away by the winter rains — and
their stony summits are often full of spiders’ nests.
These subterranean dwellings are shafts sunk vertically
in the earth, except where some stony obstruction
compels the miner to deflect from a downward
course. The shafts are from five to twelve inches in
depth, and from one-half to one and a half inches in
diameter, depending largely upon the age and size of
the spider.
When the spider has decided upon a location,
which is always in clay, adobe or stiff soil, he
excavates the shaft by means of the sharp horns at
the end of his mandibles, which are his pick and
shovel and mining tools. The earth is held between
the mandibles and carried to the surface. When the
shaft is of the required size, the spider smoothes and
glazes the wall with a fluid which is secreted by
itself. Then the whole shaft is covered with
a silken paper lining, spun from the animal’s
spinnerets.
The door at the top of the shaft is made of several
alternate layers of silk and earth, and is supplied
with an elastic and ingenious hinge, and fits closely
in a groove around the rim of the tube. This door
simulates the surface on which it lies, and is distinguishable
from it only by a careful scrutiny. The
clever spider even glues earth and bits of small plants
on the upper side of his trap-door, thus making it
closely resemble the surrounding surface.
The spider generally stations itself at the bottom
of the tube. When, by tapping on the door, or by
other means, a gentle vibration is caused, the spider
runs to the top of his nest, raises the lid, looks
out and reconnoitres. If a small creature is seen, it
is seized and devoured. If the invader is more
formidable, the door is quickly closed, seized and
held down by the spider, so that much force is
required to lever it open. Then, with the intruder
looking down upon him, the spider drops to the
bottom of his shaft.
It has been found by many experiments that when
the door of his nest is removed, the spider can renew
it five times — never more than that. Within these
limitations, the door torn off in the evening was found
replaced by a new one in the morning. Each successive
renewal showed, however, a greater proportion
of earth, and a smaller proportion of silk, until finally
the fifth door had barely enough silk to hold the
earth together. The sixth attempt, if made, was a
failure, because the spinnerets had exhausted their
supply of the web fluid. When the poor persecuted
spider finds his domicile thus open and defenceless,
he is compelled to leave it, and wait until his stock of
web fluid is renewed.85
Skilful diggers prepare burrows with several entrances;
some even arrange several rooms, each for a
special object. The Otter seeks its food in the water,
and actively hunts fish in ponds and rivers. But
when fishing is over, it likes to keep dry and at the
same time sheltered from terrestrial enemies. Its
dwelling must also present an easy opening into the
water. In order to fulfil all these conditions, its house
consists first of a large room hollowed in the bank at
a level sufficiently high to be beyond reach of floods.
From the bottom of this keep a passage starts which
sinks and opens about fifty centimetres beneath the
surface of the water. It is through here that the
Otter noiselessly glides to find himself in the midst
of his hunting domain without having been seen or
been obliged to make a noisy plunge which would
put the game to flight. If this were all, the hermetically-closed
dwelling would soon become uninhabitable,
as there would be no provision for renewing the air,
so the Otter proceeds to form a second passage from
the ceiling of the room to the ground, thus forming a
ventilation tube. In order that this may not prove a
cause of danger, it is always made to open up in the
midst of brushwood or in a tuft of rushes and reeds.
Marmots also are not afraid of the work which will
assure them a warm and safe refuge in the regions
they inhabit, where the climate is rough. In summer
they ascend the Alps to a height of 2,500 to 3,000
metres and rapidly hollow a burrow like that for
winter time, which I am about to describe, but smaller
and less comfortable. They retire into it during bad
weather or to pass the night. When the snow
chases them away and causes them to descend to a
lower zone, they think about constructing a genuine
house in which to shut themselves during the winter
and to sleep. Twelve or fifteen of these little animals
unite their efforts to make first a horizontal passage,
which may reach the length of three or four metres.
They enlarge the extremity of it into a vaulted and
circular room more than two metres in diameter.
They make there a good pile of very dry hay on
which they all install themselves, after having carefully
protected themselves against the external cold
by closing up the passage with stones and calking the
interstices with grass and moss.
In solitary woods or roads the Badger (Meles), who
does not like noise, prepares for himself a peaceful
retreat, clean and well ventilated, composed of a vast
chamber situated about a metre and a half beneath
the surface. He spares no pains over it, and makes
it communicate with the external world by seven or
eight very long passages, so that the points where
they open are about thirty paces distant from one
another. In this way, if an enemy discovers one of
them and introduces himself into the Badger’s home,
the Badger can still take flight through one of the
other passages. In ordinary times they serve for the
aëration of the central room. The animal attaches
considerable importance to this. He is also very
clean in his habits, and every day may be seen coming
out for little walks, having an object of an opposite
nature to the search for food. This praiseworthy
habit is, as we shall see, exploited by the Fox in an
unworthy manner.
The Fox has many misdeeds on his conscience, but
his conduct towards the Badger is peculiarly indelicate.
The Fox is a skilful digger, and when he
cannot avoid it, he can hollow out a house with
several rooms. The dwelling has numerous openings,
both as a measure of prudence and of hygiene, for
this arrangement enables the air to be renewed. He
prepares several chambers side by side; one of which
he uses for observation and to take his siesta in; a
second as a sort of larder in which he piles up what
he cannot devour at once; a third, in which the
female brings forth and rears her young. But he
does not hesitate to avoid this labour when possible.
If he finds a rabbit warren he tries first to eat the
inhabitants, and then, his mind cleared from this
anxiety, arranges their domicile to his own taste, and
comfortably installs himself in it. In South America,
again, the Argentine Fox frequently takes up permanent
residence in a vizcachera, ejecting the rightful
owners; he is so quiet and unassuming in his manners
that the vizcachas become indifferent to his presence,
but in spring the female fox will seize on the young
vizcachas to feed her own young, and if she has eight
or nine, the young of the whole village of vizcachas
may be exterminated.
The Badger’s dwelling appears to the Fox particularly
enviable. In order to dislodge the proprietor he
adopts the following plan. Knowing that the latter
can tolerate no ordure near his home, he chooses as a
place of retirement one of the passages which lead
to the chamber of the peaceful recluse. He insists
repeatedly, until at last the Badger, insulted by this
grossness, and suffocated by the odour, decides to
move elsewhere and hollow a fresh palace. The Fox
is only waiting for this, and installs himself without
ceremony.
The Vizcacha (Lagostomus trichodactylus) is a large
Rodent inhabiting a vast extent of country in the
pampas of La Plata, Patagonia, etc. Unlike most
other burrowing species, the Vizcacha prefers to work
on open level spots. On the great grassy plains it is
even able to make its own conditions, like the Beaver,
and is in this respect, and in its highly-developed social
instinct, among the two or three Mammals which
approach Man, although only a Rodent, and even in
this order, according to Waterhouse, coming very low
down by reason of its marsupial affinities.
The Vizcacha lives in small communities of from
twenty to thirty members, in a village of deep-chambered
burrows, some twelve or fifteen in number, with
large pit-like entrances closely grouped together, and
as the Vizcachera, as this village is called, endures for
an indefinitely long period, the earth which is constantly
brought up forms an irregular mound thirty
or forty feet in diameter, and from fifteen to thirty
inches above the level of the road; this mound serves
to protect the dwelling from floods on low ground.
A clearing is made all round the abode and all
rubbish thrown on the mound; the Vizcachas thus
have a smooth turf on which to disport themselves,
and are freed from the danger of lurking enemies.
The entire village occupies an area of one hundred
to two hundred square feet of ground. The burrows
vary greatly in extent; usually in a Vizcachera there
are several that, at a distance of from four to six feet
from the entrance, open into large circular chambers.
From these chambers other burrows diverge in all
directions, some running horizontally, others obliquely
downwards to a maximum depth of six feet from the
surface; some of these galleries communicate with
those of other burrows.
On viewing a Vizcachera closely, the first thing that
strikes the observer is the enormous size of the
entrances to the central burrows in the mound; there
are usually several smaller outside burrows. The
entrance to some of the principal burrows is sometimes
four to six feet across the mouth, and sometimes
it is deep enough for a tall man to stand in up to
the waist.
It is not easy to tell what induces a Vizcacha to
found a new community, for they increase very slowly,
and are very fond of each other’s society. It is
invariably one individual alone who founds the new
village. If it were for the sake of better pasture he
would remove to a considerable distance, but he
merely goes from forty to sixty yards off to begin
operations. Sooner or later, perhaps after many
months, other individuals join the solitary Vizcacha,
and they become the parents of innumerable generations
in the same village: old men, who have lived
all their lives in one district, remember that many
of the Vizcacheras around them existed when they
were children.
It is always a male who begins the new village.
Although he does not always adopt the same method,
he usually works very straight into the earth, digging
a hole twelve or fourteen inches wide, but not so
deep, at an angle of about 25° with the surface. After
he has progressed inwards for a few feet, the animal is
no longer content merely to scatter the loose earth;
he cleans it away in a straight line from the entrance,
and scratches so much on this line, apparently to make
the slope gentler, that he soon forms a trench a foot
or more in depth, and often three or four feet in
length. This facilitates the conveyance of the loose
earth as far as possible from the entrance of the
burrow. But after a while the animal is unwilling
that earth should accumulate even at the end of this
long passage, and proceeds to form two additional
trenches, making an acute or right angle converging
into the first trench, so that the whole when completed
takes a Y shape. These trenches are continually
deepened and lengthened in this manner,
the angular segment of earth between them being
scratched away, until by degrees it gives place to one
large deep irregular mouth. The burrows are made
best in the black and red moulds of the pampas; but
even in such soils the entrances may be varied. In
some the central trench is wanting, or so short that
there appear to be but two passages converging
directly into the burrow, or these two trenches may
be so curved inwards as to form the segment of
a circle. Usually, however, the varieties are only
modifications of the Y-shaped system.
On the pampas a wide-mouthed burrow possesses
a distinct advantage over the more usual shape. The
two outer trenches diverge so widely from the mouth
that half the earth brought out is cast behind instead
of before it, thus creating a mound of equal height
about the entrance, by which it is secured from water
during great rainfalls, while cattle avoid treading over
the great pit-like entrances, though they soon tread and
break in the burrows of the Armadillo and other
species when these make their homes on perfectly
level ground.
The Vizcachas do not usually leave their burrows
until dark, but in summer they come out before sunset.
Usually one of the old males first appears,
and sits on some prominent place on the mound,
apparently in no haste to begin his evening meal.
Other Vizcachas soon begin to appear, each quietly
taking up his position at the burrow’s mouth. The
females, known by their smaller size and lighter
colour, sit upright on their haunches, as if to command
a better view; they are always wilder and sprightlier
in their gestures than the males. They view a human
stranger with a mixture of fear and curiosity, sometimes
allowing him to come within five or six paces
of them; in desert regions, however, where enemies
are numerous, the Vizcacha is very timid and
wary.
These animals are very sociable, and their sociability
extends beyond their own vizcachera. On approaching
a vizcachera at night, usually some of the Vizcachas
on it scamper off to distant burrows. These are neighbours
merely come to pay a friendly visit. The
intercourse is so frequent that little straight paths are
formed from one village to another. Their social
instinct leads members of one village to assist those
of another when in trouble. Thus, if a vizcachera is
covered over with earth in order to destroy the
animals within, Vizcachas from distant burrows will
subsequently be found zealously digging out their
friends. The hospitality of the Vizcacha does not,
however, extend to his burrow; he has a very strong
feeling with regard to the sanctity of the burrow.
A Vizcacha never enters another’s burrow, and if by
chance driven into one by dogs will emerge speedily,
apparently finding that the danger within is greater than
the danger without. In connection with the sociability
of the Vizcacha, we must take into consideration the
fact that Vizcachas possess a wonderfully varied and
expressive language, and are engaged in perpetual
discussion all night long.86
Burrows with barns adjoined. — Certain Rodents
have carried hollow dwellings to great perfection.
Among these the Hamster of Germany (Cricetus
frumentarius) is not the least ingenious. To his
dwelling-room he adds three or four storehouses for
the amassed provisions of which I have already had
occasion to speak. The burrow possesses two openings:
one, which the animal prefers to use, which
sinks vertically into the soil; the other, the passage
of exit with a gentle and very winding slope. The
bottom of the central room is carpeted with moss and
straw, which make it a warm and pleasant home.
A third tunnel starts from this sleeping chamber,
soon forking and leading to the wheat barns. Thus
during the winter the Hamster has no pressing need
to go out except on fine days for a little fresh air.
He has everything within his reach, and can remain
shut up with nothing to fear from the severity of the
season.
Dwellings hollowed out in wood. — It is not only the
soil which may serve for retreat; wood serves as an
asylum for numerous animals, who bore it, and find
in it both food and shelter. In this class must be
placed a large number of Worms, Insects, and Crustaceans.
One of these last, the Chelura terebrans, a
little Amphipod, constitutes a great danger for the
works of man. It attacks piles sunken to support
structures, and undermines them to such a degree that
they eventually fall. Wood is formed of concentric
layers alternately composed of large vessels formed
during the summer, and smaller vessels formed during
the winter. The latter zones are more resistant, the
former are softer. When one of these Crustaceans
attacks a pile, it first bores a little horizontal passage,
stopping at a layer of summer-growth. It there
hollows a large grotto, leaving here and there pillars
of support. It lays in this space. The new generation
working around the parents increases the space
and feeds on the wood removed. A second generation
is produced, and the inhabitants become pressed
for space. The new-born pierce numerous passages
and penetrate towards the interior of the pile as far as
the next summer layer. There they spread themselves,
always boring; they construct new rooms like
the first, and arrange pillars here and there. Their
descendants gain the subjacent zone, and so the
process goes on. During this time the early ancestors
who hollowed the surface dwellings have died, and
the holes which they made are no longer habitable;
but they have all contributed to diminish the resistance
of the wood, and this continues as long as the
race which they produced makes its way towards the
centre of the stake.
An insect, the Xylocopa violacea (Fig. 22), related
to our Humble-bee, from which it differs in several
anatomical characters, and by the dark violet tint of
its wings, brings an improvement to the formation of
the shelter which it makes in wood for its larvæ.
Instead of hollowing a mere retreat to place there all
its eggs indiscriminately, it divides them into compartments,
separated by horizontal partitions. It is the
female alone who accomplishes this task, connected
with the function of perpetuating the race. She
chooses an old tree-trunk, a pole, or the post of a
fence, exposed to the sun and already worm-eaten, so
that her labour may be lightened. She first attacks
the wood perpendicularly to the surface, then suddenly
turns and directs downwards the passage, the
diameter of which is about equal to the size of the
insect’s body. The Xylocopa thus forms a tube about
thirty centimetres in length. Quite at the bottom
she places the first egg, leaving beside it a provision
of honey necessary to nourish the larva during its
evolution; she then closes it with a partition. This
partition is made with fragments of the powder of
wood glued together with saliva. A first horizontal
ring is applied round the circumference of the tube;
then in the interior of this first ring a second is
formed, and so on continuously, until the central
opening, more and more reduced, is at last entirely
closed up. This ceiling forms the floor for the next
chamber, in which the female deposits a new egg,
provided, like the other, with abundant provisions.
The same acts are repeated until the retreat becomes
transformed into a series of isolated cells in which
the larvæ can effect their development, and from
which they will emerge either by themselves perforating
a thin wall which separates them from daylight,
or by an opening which the careful mother has
left to allow them to attain liberty without trouble.87
Woven dwellings. — The second class of habitation,
which I have called the woven dwelling, proceeds at
first from the parcelling up of substances, then of
objects capable of being entangled like wisps of wood
or straw, then of fine and supple materials which the
artisan can work together in a regular manner, that is
to say by felting or weaving. Facts will show us the
successive stages of improvement which have been
introduced into this industry. I will begin with the
more rudimentary.
Rudiments of this industry. — There are, first, cases
in which the will of the animal does not intervene, or
at least is very slightly manifested. The creature is
found covered and protected by foreign bodies which
are often living beings. Spider-crabs (Maïa), for
example, have their carapaces covered with algæ and
hydroids of all sorts. Thus garnished, the Crustaceans
have the advantage of not being recognised
from afar when they go hunting, since beneath this
fleece they resemble some rock. H. Fol has observed
at Villefranche-sur-Mer a Maïa so buried beneath
this vegetation that it was impossible at first sight to
distinguish it from the stones around. Under these
conditions the animal submits to a shelter rather than
creates it. Yet it is not so passive as one might at
first be led to suppose. When the algæ which
flourish on its back become too long and impede or
delay its progress, it tears them off with its claws
and thoroughly cleans itself. The carapace being
quite clean, the animal finds itself too smooth and
too easy to distinguish from surrounding objects; it
therefore takes up again fragments of algæ and replaces
them where they do not delay to take root like
cuttings and to flourish anew. This culture is therefore
intentional; the crab directs it and arrests its
exuberance; it is no more the victim of it than the
gardener is the slave of the vegetables which he
waters day by day. From generation to generation
this crab has acquired the habit, the instinct if one
prefers, of thus covering itself so that it may be confused
with neighbouring objects. Naturally it is
ignorant of botany, and knows nothing of cuttings.
If placed in an aquarium with little fragments of
paper it will seize them and place them on its back,
as it would have done with algæ, without troubling
as to whether they become fixed or not. In spite of
this lack of judgment, we cannot fail to recognise
in this Maïa a certain ingenuity in self-concealment.
The Sponge-crab (Dromia vulgaris) also practises
this method of shelter. It seizes a large sponge and
maintains it firmly over its carapace with the help of
the posterior pair of limbs. The sponge continues to
prosper and to spread over the Crustacean who has
adopted it. (Fig. 23.) The two beings do not
seem to be definitely fixed to each other; the contact
of a sudden wave will separate them. When the
divorce is effected, the Dromia immediately throws
itself on its cherished covering and replaces it. M.
Künckel d’Herculais tells of one of these curious
crustaceans which delighted the workers in the laboratory
of Concarneau. The need for covering themselves
experienced by these Crabs is so strong that
in aquariums when their sponge is taken away they
will apply to the back a fragment of wrack or of
anything which comes to hand. A little white cloak
with the arms of Brittany was manufactured for one
of these captives, and it was very amusing to see him
put on his overcoat when he had nothing else wherewith
to cover himself.88
In these two cases which I have brought forward
to exhibit the rudiments of this industry, the animals’
reflection and will play but a small part; even in
the Dromia custom is so inveterate in the race that
it has reacted on the animal’s organisation, and its
four posterior legs are profoundly modified for the
purpose of firmly holding the sheltering sponge; they
no longer serve for swimming or walking. The
animals of which I have now to speak possess more
initiative; although all do not act with the same
success, or show themselves equally skilful. Let us
turn first to the least experienced.
An Australian bird, the Catheturus Lathami, as
described by Gould, is still in the rudiments, and
limits itself to preparing an enormous pile of leaves.
It begins its work some weeks before laying its
eggs; with its claws it pushes behind it all the dead
leaves which fall on the earth and brings them into a
heap. The bird throws new material on the summit
until the hole is of suitable height. This detritus
ferments when left to itself, and a gentle heat is
developed in the centre of the edifice. The Catheturus
returns to lay near this coarse shelter; it then
takes each egg and buries it in the heap, the larger
end uppermost. It places a new layer above, and
quits its labour for good. Incubation takes place
favoured by the uniform heat of this decomposing
mass, hatching is produced, and the young emerge
from their primitive nest.
Birds are not alone in constructing temporary
dwellings in which to lay their eggs; some Fish are
equally artistic in this kind of industry, and even
certain Reptiles. The Alligator of the Mississippi
would not perhaps at first be regarded as a model
of maternal foresight. Yet the female constructs a
genuine nest. She seeks a very inaccessible spot in
the midst of brushwood and thickets of reeds. With
her jaw she carries thither boughs which she arranges
on the soil and
covers with leaves.
She lays her eggs
and conceals them
with care beneath
vegetable remains.
Not yet considering
her work completed,
she stays in
the neighbourhood
watching with jealous
eye the thicket
which shelters the dear deposit, and never ceases to
mount guard threateningly until the day when her
young ones can follow her into the stream.
A hymenopterous relative of the Bees, the Megachile,
cuts out in rose-leaves fragments of appropriate form
which it bears away to a small hole in a tree, an
abandoned mouse nest or some similar cavity. There
it rolls them, works them up, and arranges them with
much art, so as to manufacture what resemble thimbles,
which it fills with honey and in which it lays.89 (Fig. 24.)
The Anthocopa acts in a similar manner, carpeting
the holes of which it takes possession with the delicate
petals of the corn poppy.
The retreats of nocturnal birds of prey do not
differ in method of construction from these two kinds
of nests. They are holes in trees, in ruins, in old walls,
and are lined with soft and warm material. These
dwellings are related, not to the type of the hollowed
cave, but to that of the habitation manufactured
from mingled materials. They constitute an inferior
form in which the pieces are not firmly bound together
but need support throughout. The cavity is the
support which sustains the real house.
Dwellings formed of coarsely-entangled materials. — Diurnal
birds of prey are the first animals who
practise skilfully the twining of materials. Their
nests, which have received the name of eyries, are
not yet masterpieces of architecture, and reveal the
beginning of the industry which is pushed so far by
other birds. Usually situated in wild and inaccessible
spots, the young are there in safety when their
parents are away on distant expeditions. The abrupt
summits of cliffs and the tops of the highest forest
trees are the favourite spots chosen by the great birds
of prey. The eyrie generally consists of a mass of
dry branches which cross and mutually support one
another, constituting a whole which is fairly resistant.
Even these primitive nests are not, however, without
more complicated details of interest. Thus Mr.
Denis Gale wrote to Bendire concerning the Golden
Eagle in America: “Here in Colorado, in the
numerous glades running from the valleys into the
foothills, high inaccessible ledges are quite frequently
met with which afford the Eagles secure sites for their
enormous nests. I know of one nest that must
contain two waggon-loads of material. It is over
seven feet high, and quite six feet wide on its upper
surface. In most cases the cliff above overhangs the
site. At the end of February or the beginning of
March, the needful repairs to the nest are attended
to, and the universal branch of evergreen is laid upon
the nest, seemingly for any purpose save that of
utility. This feature has been present in all the nests
I have examined myself, or have had examined by
others; it would seem to be employed as a badge of
occupancy.”90 This curious feature is also found in the
nests of the Bald or American Eagle. Thus Dr. W. L.
Ralph furnished Bendire with the following observations
made in Florida on the dwellings of this, the
national bird of the United States: — “The nests are
immense structures, from five to six feet in diameter,
and about the same in depth, and so strong that a man
can walk around in one without danger of breaking
through; in fact, my assistant would always get in
the nest before letting the eggs down to me. They
are composed of sticks, some of which are two or
three inches thick, and are lined with marsh grass
or some similar material. There is usually a slight
depression in the centre, where the eggs are placed,
but the edge of the nest extends so far beyond this
that it is almost impossible to see the bird from
below, unless it has its head well up. I have frequently
found foreign substances in their nests,
usually placed on the edges of it, the object of which
I cannot account for. Often it would be a ball of
grass, wet or dry, sometimes a green branch from a
pine tree, and again a piece of wood, bark, or other
material. It seemed as if they were placed in
the nests as if to mark them. From its frequent
occurrence, at least, it seemed to me as if designedly
done.”91
The abodes of Squirrels, though exhibiting more
art, are constructions of the same nature; that is to
say, they are formed of interlaced sticks. This
animal builds its home to shelter itself there in the
bad season, to pass the night in it, and to rear its
young. Very agile, and not afraid of climbing, it
places its domicile near the tops of our highest forest
trees. Rather capricious also, and desiring change of
residence from time to time, it builds several of them;
at least three or four, sometimes more. The materials
which it needs are collected on the earth among fallen
dead branches, or are torn away from the old
abandoned nest of a crow or some other bird. The
Squirrel firsts builds a rather hollow floor by intermingling
the fragments of wood which it has brought.
In this state its dwelling resembles a magpie’s nest.
But the fastidious little animal wishes to be better
protected and not thus to sleep in the open air. Over
this foundation he raises a conical roof; the sticks
which form it are very skilfully disposed, and so well
interlaced that the whole is impenetrable to rain.
The house must still be furnished, and this is done
with oriental luxury; that is to say, the entire furniture
consists of a carpet, a carpet of very dry moss,
which the Squirrel tears from the trunks of trees, and
which it piles up so as to have a soft and warm
couch. An entrance situated at the lower part gives
access to the aërial castle; it is usually directed
towards the east. On the opposite side there is
another orifice by which the animal can escape if an
enemy should invade the principal entrance. In
ordinary times also it serves to ventilate the chamber
by setting up a slight current of air. The Squirrel
greatly fears storms and rain, and during bad
weather hastens to take refuge in his dwelling. If
the wind blows in the direction of the openings,
the little beast at once closes them with two stoppers
of moss, and keeps well shut in as long as the
storm rages.
The great Anthropoid Apes have found nothing
better for shelter than the Squirrels’ method. It
must, however, be taken into account that they have
much more difficulty in arranging and maintaining
much heavier rooms, and in building up a shelter with
larger surface.
The Orang-outang, which lives in the virgin forests
of the Sunda Archipelago, does not feel the need of
constructing a roof against the rain. He is content
with a floor established in the midst of a tree, and
made of broken and interlaced branches. He piles
up on this support a considerable mass of leaves and
moss; for the Orang does not sleep seated like the
other great apes, but lies down in the manner of Man,
as has often been observed when he is in captivity.
When he feels the cold he is ingenious enough to
cover himself with the leaves of his couch.
In Upper and Lower Guinea the Chimpanzee
(Troglodytes niger) also establishes his dwelling on
trees. He first makes choice of a large horizontal
branch, which constitutes a sufficient floor for the
agile animal. Above this branch he bends the
neighbouring boughs, crosses them, and interlaces
them so as to obtain a sort of framework. When
this preliminary labour is accomplished, he collects
dead wood or breaks up branches and adds them to
the first. Before commencing he had taken care
when choosing the site that the whole was so
arranged that a fork was within reach to sustain the
roof. He thus constructs a very sufficient shelter.
These apes are sociable and prefer to live in each
other’s neighbourhood. They even go on excursions
in rather large bands. Notwithstanding this, more
than one or two cabins are never seen on the same
tree; perhaps this is because the complicated conditions
required for the construction are not likely
to be realised several times on the same tree;
perhaps also it is a desire for independence which
impels the Chimpanzees not to live too near to each
other.92
The Troglodytes calvus, a relative of the preceding,
inhabiting the same regions, as described by Du
Chaillu, shows still more skill in raising his roof. A
tree is always chosen for support. He breaks off
boughs and fastens them by one end to the trunk, by
the other to a large branch. To fix all these pieces
he employs very strong creepers, which grow in
abundance in his forests. Above this framework, which
indicates remarkable ingenuity, the animal piles up
large leaves, forming in layers well pressed down and
quite impenetrable to the rain. The whole has the
appearance of an open parasol. The ape sits on a
branch beneath his handiwork, supporting himself
against the trunk with one arm. He has thus an
excellent shelter against the mid-day sun as well as
against tropical showers. Male and female each
possess a dwelling on two neighbouring trees, the
principle of conjugal cohabitation not being admitted
in this species. As to the child, it appears that it
sleeps near its mother, until it is of age to lead an
independent life.
There exists in Australia, the country of zoological
singularities, a bird with very curious customs. This
is the Satin Bower-bird. The art displayed in this
bird’s constructions is not less interesting than the
sociability he gives evidence of, and his desire to
have for his hours of leisure a shelter adorned to his
taste. The bowers which he constructs, and which
present on a small scale the appearance of the arbours
in our old gardens, are places for re-union and for
warbling and courtship, in which the birds stay during
the day, when no anxiety leads them to disperse.
They are not, properly speaking, nests built for the
purpose of rearing young; for at the epoch of love
each couple separates and constructs a special retreat
in the neighbourhood of the bower. These shelters
are always situated in the most retired parts of the
forest, and are placed on the earth at the foot of trees.
Several couples work together to raise the edifice, the
males performing the chief part of the work. At first
they establish a slightly convex floor, made with
interlaced sticks, intended to keep the place sheltered
from the moisture of the soil. The arbour rises in
the centre of this first platform. Boughs vertically
arranged are interlaced at the base with those of the
floor. The birds arrange them in two rows facing
each other; they then curve together the upper
extremities of these sticks, and fix them so as to
obtain a vault. All the prominences in the materials
employed are turned towards the outside, so that the
interior of the room may be smooth and the birds
may not catch their plumage in it. This done, the
little architects, to embellish their retreat, transport
to it a number of conspicuous objects, such as very
white stones from a neighbouring stream, shells, the
bright feathers of the parroquet, whatever comes to
their beak. All these treasures are arranged on the
earth, before the two entries to the bower, so as to
form on each side a carpet, which is not smooth, but
the varied colours of which rejoice the eye. The
prettiest treasures are fixed into the wall of the hut.
These houses of pleasure, with all their adornments,
form a dwelling very much to the taste of this
winged folk, and the birds pass there the greater
part of the day, preening their feathers and narrating
the news of the forest. Bower-birds’ clubs
are drawing-rooms raised at the common expense by
all who frequent them. The Spotted Bower-bird, the
Chlamydera maculata, which also lives in the interior
of Australia, exercises this method of construction
with equal success. The bowers built by these birds
may be one metre in length; this is on a very
luxurious scale, the animal itself only measuring
twenty-five centimetres. In this species, as among
other Bower-birds, the bowers are not the labour and
the property of a single couple; they are the result
of the collaboration of several households, who come
together to shelter themselves there. These birds
feed only on grains, so that it is to a very pronounced
taste for collecting that we must attribute
this mania of piling up before the entrance of the
bower white stones, shells, and small bones. (Fig. 25.)
These objects are intended solely for the
delight of these feathered artists. They are very
careful also only to collect pieces which have been
whitened and dried by the sun.93
Certain Humming-birds also, according to Gould,
decorate their dwellings with great taste. “They
instinctively fasten thereon,” he stated, “beautiful
pieces of flat lichen, the larger pieces in the middle,
and the smaller on the part attached to the branch.
Now and then a pretty feather is intertwined or
fastened to the outer sides, the stem being always
so placed that the feather stands out beyond the
surface.”94
Dwellings woven of flexible substances. — In spite of
their lack of skill and the inadequacy of their organs
for this kind of work, Fish are not the most awkward
architects. The species which construct nests for
laying in are fairly numerous; the classical case of
the Stickleback is always quoted, but this is not the
only animal of its class to possess the secret of the
manufacture of a shelter for its eggs.
A fish of Java, the Gourami (Osphronemus olfax),
establishes an ovoid nest with the leaves of aquatic
plants woven together. It makes its work about the
size of a fist, takes no rest until it is completed, and
is able to finish it in five or six days. It is the male
alone who weaves this dwelling; when it is ready a
female comes to lay there, and generally fills it; it
may contain from six hundred to a thousand eggs.
In the sea of Sargasso lives a fish which has received
the name of the Antennarius marmoratus. Its
flattened and monstrous head gives it a strange
aspect, and it is marbled with brown and yellow.
These colours are those of the tufts of floating seaweed
around it, and, thanks to this arrangement, it
can easily hide itself amid them without being recognised
from afar. This animal constructs for its
offspring a fairly safe retreat. The materials which it
employs are tufts of Sargasso so abundant in this portion
of the Atlantic. It collects all the filaments, and
unites them solidly by surrounding them with viscous
mucus which it secretes and which hardens. When its
work is sufficiently firm not to be destroyed by the
waves it lays its eggs in it, and the floating nest is
abandoned to its fate. The little ones come out and
find within it a sufficient protection for their early
age. These dwellings thus floating on the surface
of the sea are rounded and about the size of a
cocoa-nut.
In Guiana and Brazil another species, the Chœstostomus
pictus, is found, which is equally skilful. With
aquatic plants it constructs a spherical nest and
arranges it in the midst of the reeds, level with the
water. At the lower part a hole is left, through which
the female comes to lay. After fertilisation, the couple,
as is rarely found among fish, remain in the neighbourhood
of their offspring to assist them if necessary.
This praiseworthy sentiment is often the cause of
their ruin. The inhabitants of the banks speculate on
the love of these fish for their offspring to gain
possession of them. It is sufficient to place a basket
near the entrance of the dwelling, which is then lightly
struck. The animal, threatened in its affections, darts
furiously forward with bristling spines and throws
itself into the trap.
It is scarcely necessary to recall the skilful art with
which the Stickleback which inhabits all our streams
plaits its nest and remains sentinel near it. (Fig. 26.)
This fish has indeed monopolised our admiration,
and is considered as the most skilful, if not the
only aquatic architect. Yet, besides those which I have
already mentioned, there is one which equals the
Stickleback in the skill it displays in constructing a
shelter for its spawn. This is the Gobius niger met
on our coasts, especially in the estuaries of rivers.
The male interlaces and weaves the leaves of algæ,
etc., and when he has finished his preparations, he
goes to seek females, and leads them one by one to
lay in the retreat he has built. Then he remains in
the neighbourhood until the young come out, ready
to throw himself furiously with his spines on any
imprudent intruders.
Dwellings woven with greater art. — Without doubt
the class of Birds furnishes the most expert artisans
in the industry of the woven dwelling. In our own
country we may see them seeking every day to right
and left, carrying a morsel of straw, a pinch of moss,
a hair from a horse’s tail, or a tuft of wool caught in
a bush. They intermingle these materials, making the
framework of the construction with the coarser pieces,
keeping those that are warmer and more delicate for
the interior. These nests, attached to a fork in a
branch or in a shrub, hidden in the depth of a thicket,
are little masterpieces of skill and patience. To
describe every form and every method would fill a
volume. But I cannot pass in silence those which
reveal a science sure of itself, and which are not very
inferior to what man can do in this line. The
Lithuanian Titmouse (Ægithalus pendulinus), whose
works have been well described by Baldamus, lives in
the marshes in the midst of reeds and willows in
Poland, Galicia, and Hungary. Its nest, which
resembles none met in our own country, is always
suspended above the water, two or three metres above
the surface, fixed to a willow branch.95 All individuals
do not exhibit the same skill in fabricating their
dwelling; some are more careful and clever than
others who are less experienced. Some also are
obliged by circumstances to hasten their work. It
frequently happens that Magpies spoil or even
altogether destroy with blows of their beaks one of
these pretty nests. The unfortunate couple are
obliged to recommence their task, and if this accident
happens two or three times to the same household, it
can easily be imagined that, discouraged and depressed
by the advancing season, they hasten to build a shelter
anyhow, only doing what is indispensable, and neglecting
perfection. However this may be, the nests
which are properly finished have the form of a
purse, twenty centimetres high and twelve broad.
(Fig. 27.) At the side an opening, prolonged by a
passage which is generally horizontal, gives access to
the interior. Sometimes another opening is found
without any passage. Every nest in the course of
construction possessed this second entry, but it is
usually filled up when the work is completed. When
the bird has resolved to establish its retreat, it first
chooses a hanging branch presenting bifurcations
which can be utilised as a rigid frame on which to
weave the lateral walls of the habitation. It intercrosses
wool and goat’s hair so as to form two courses
which are afterwards united to each other below, and
constitute the first sketch of the nest, at this moment
like a flat-bottomed basket. This is only the beginning.
The whole wall is reinforced by the addition of
new material. The architect piles up down from the
poplar and the willow, and binds it all together with
filaments torn from the bark of trees, so as to make
a whole which is very resistant. Then a couch is
formed by heaping up wool and down at the bottom
of the nest.
The American Baltimore Oriole, also called the Baltimore
Bird, is a distinguished weaver. With strong
stalks and hemp or flax, fastened round two forked
twigs corresponding to the proposed width of nest, it
makes a very delicate sort of mat, weaving into it
quantities of loose tow. The form of the nest might
be compared to that of a ham; it is attached by the
narrow portion to a small branch, the large part being
below. An opening exists at the lower end of the
dwelling, and the interior is carefully lined with soft
substances, well interwoven with the outward netting,
and it is finished with an external layer of horse-hair,
while the whole is protected from sun and rain by a
natural canopy of leaves.
The Rufous-necked Weaver Bird, as described by
Brehm, shows itself equally clever. Its nest is woven
with extreme delicacy, and resembles a long-necked
decanter hung up with the opening below. From the
bottom of the decanter a strong band attaches the
whole to the branch of a tree. (Fig. 28.) The
Yellow Weaver Bird of Java, as described by Forbes,
constructs very similar retort-shaped nests.96
These birds have no monopoly of these careful
dwellings; a considerable number of genera have
carried this industry to the same degree of perfection.
When animals apply themselves in association to
any work, they nearly always exhibit in it a marked
superiority over neighbouring species among whom
the individuals work in isolation. The construction of
dwellings is no exception, and the nests of the Sociable
Weaver Birds of South Africa are the best constructed
that can be found. These birds live together in considerable
colonies; the members of an association are
at least two hundred in number, and sometimes rise
to five hundred. The city which they construct is a
marvel of industry. They first make with grass a
sloping roof; giving it the form of a mushroom or an
open umbrella, and they place it in such a way that
it is supported by the trunk of a tree and one or two
of the branches. (Fig. 29.) This thatch is prepared
with so much care that it is absolutely impenetrable
to water. Beneath this protecting shelter
each couple constructs its private dwelling. All the
individual nests have their openings below, and they
are so closely pressed against one another that on
looking at the construction from beneath, the divisions
cannot be seen. One only perceives a surface riddled
with holes like a skimmer; each of these holes is the
door of a nest. The work may endure for several
years; as long as there is room beneath the roof the
young form pairs near their cradle; but at last, as the
colony continues to increase, a portion emigrate to
found a new town on another tree in the forest.97
The industry of the woven dwelling does not
flourish among mammals; but there is one which
excels in it. This is the Dwarf Mouse (Mus minutus),
certainly one of the smallest Rodents. It generally
lives amidst reeds and rushes, and it is perhaps this
circumstance which has impelled it to construct an
aërial dwelling for its young, not being able to deposit
them on the damp and often flooded soil. This
retreat is not used in every season; its sole object
is for bringing forth the young. It is therefore a
genuine nest, not only by the manner in which it is
made, but by the object it is intended to serve. The
mouse chooses in the midst of its usual domain a tuft
with leaves more or less crossed; but not too inextricable,
so that there may remain in the midst an
empty space, in the centre of which the work will be
arranged. Great ingenuity is shown in the preliminaries;
the mouse simplifies its task by utilising
material within its reach instead of going afar to
collect them with trouble. The little animal examines
the thicket, and on reflection chooses some
thirty leaves which appear suitable. Then, without
detaching them, it tears each into seven or eight
threads which are held together by the base, and
remain attached to the reeds. It is a clever idea to
avoid losing a natural point of support. The little
bands being thus prepared, they are interlaced and
crossed with much art, the animal comes and goes,
placing first one of them, then another above, taken
from a different leaf. It has soon woven a ball about
the size of the fist, and hollowed out the interior.
(Fig. 30.) Delicate materials are not lacking around
to make a soft bed. The mouse gleans and constantly
brings in the light down of the willow,
grains with cottony crests, and the petals of flowers.
This is all carefully fitted, and when the edifice is
completed the female retires into it to bring forth
her young, which are there well sheltered against the
dangers without, and the caprices of storms and
floods. The nest is made with as much delicacy as
that of any bird, and no other mammal except Man
is capable of executing such weaver’s work.
The art of sewing among birds. — There are birds
which have succeeded in solving a remarkable difficulty.
Sewing seems so ingenious an art that it must
be reserved for the human species alone. Yet the
Tailor Bird, the Orthotomus longicauda, and other
species possess the elements of it. They place their
nests in a large leaf which they prepare to this end.
With their beaks they pierce two rows of holes along
the two edges of the leaf; they then pass a stout
thread from one side to the other alternately. With
this leaf, at first flat, they form a horn in which they
weave their nest with cotton or hair. (Fig. 31.)
These labours of weaving and sewing are preceded
by the spinning of the thread. The bird makes it
itself by twisting in its beak spiders’ webs, bits of
cotton, and little ends of wool. Sykes found that the
threads used for sewing were knotted at the ends.98
It is impossible not to admire animals who have
skilfully triumphed over all the obstacles met with
in the course of these complicated operations.99
Certain Spiders, while they do not actually
sew in the sense that they perforate the leaves
they use to build their nest, and draw the thread
through them, yet subject the leaves to an operation
which cannot well be called anything else but
sewing it.100
Modifications of dwellings according to season and
climate. — A certain number of facts show that these
various industries are not fixed and immutable instincts
imposed on the species. Certain Birds change
the form of their dwelling according to the climate,
or according to the season in which they inhabit it.
For example, the Crossbill, Loxia tænioptera (Fig. 32),
does not build its nest according to the same rules
in Sweden as in France. It builds in every season.
The winter shelter is spherical, constructed with very
dry lichens, and it is very large. A very narrow
opening, just sufficient for the passage of the owner,
prevents the external cold from penetrating within.
The summer nests are much smaller, in consequence
of a reduction in the thickness of the walls. There is
no longer need to fear that the cold will come through
them, and the animal gives itself no superfluous
trouble.
Again, the Baltimore Oriole, which inhabits both the
Northern and Southern States of North America, knows
very well how to adapt his manner of work to the
external circumstances in which he lives. Thus, in
the Southern States the nest is woven of delicate
materials united in a rather loose fashion, so that the
air can circulate freely and keep the interior fresh;
it is lined with no warm substance, and the entrance
is turned to the west so that the sun only sends into
it the oblique evening rays. In the north, on the
contrary, the nest is oriented to the south to profit by
all the warm sunshine; the walls are thick, without
interstices, and the dwelling is carpeted in the warmest
and softest manner. Even in the same region
there is great diversity in the style, neatness, and
finish of the
nests, as well as
in the materials
used. Skeins
of silk and
hanks of thread
have frequently
been found in
the Baltimore
Bird’s nest, so
woven up and
entangled that
they could not
be withdrawn.
As such materials
could
not be obtained
before the introduction
of
Europeans, it
is evident that
this bird, with
the sagacity of
a good architect,
knows how
to select the
strongest and
best materials for his work. Many other facts might
be quoted, but these suffice to show that the species
is not animated by an inevitable instinct, but that each
individual, skilful no doubt by heredity, can modify the
methods transmitted to him by his ancestors, according
to his own experience and his own judgment.
Built dwellings. — The built dwelling, the expression
of the highest civilisation, still remains to be studied.
Man has only known how to construct this kind of
shelter at a comparatively late period in his evolution;
and among animals we do not find it widely spread,
much less so, certainly, than the two foregoing methods,
especially the first. The difficulty of this work is
greater, and it only arrives at considerable development
among very sociable species, since the united
efforts of a great number of individuals are needed to
carry it on.
There are, however, masons who operate separately;
but their constructions are rudimentary. The characteristic
of all these works is that they are manufactured
with some substance to which the animal
gives a determined form while it is still soft, and that
in drying it preserves this form and acquires solidity.
The matter most usually employed is softened and
tempered earth — mortar; but there are animals who
use with success more delicate bodies. Two examples
will suffice to indicate the nature of these exceptions:
the labours of Wasps and those of certain Swallows.
Paper nests. — Certain Wasps, by the material of
their dwellings, approach the Japanese; they build
with paper. This paper or cardboard is very strong
and supplies a solid support; moreover, being a bad
conductor of heat, it contributes to maintain an
equable temperature within the nest. The constructions
of these insects, though they do not exhibit the
geometric arrangement of those of Bees, are not less
interesting. The paper which they employ is manufactured
on the spot, as the walls of the cells develop.
Detritus of every kind enters into its
preparation: small fragments of wood, sawdust, etc.;
anything is good. These Hymenoptera possess no
organ specially adapted to aid them; it is with their
saliva that they glue this dust together and make of
it a substance very suitable for its purpose. The
dwellings often reach considerable size, yet they are
always begun by a single female, who does all the
work without help until the moment when the first
eggs come out; she is thus furnished with workers
capable of taking a share in her task. The Vespa
sylvestris builds a paper nest of this kind, hanging to
the branch of a tree, like a great grey sphere prolonged
to a blunt neck. (Fig. 33.) The Hornet’s
nest is similar in construction.
Gelatine nests. — These are made by certain Swallows
who nest in grottoes or cliffs on the edge of the sea.
After having collected from the water a gelatinous
substance formed either of the spawn of fish or the
eggs of Mollusca, they carry this substance on to a
perpendicular wall, and apply it to form an arc of a
circle. This first deposit being dry, they increase it
by sticking on to its edge a new deposit. Gradually
the dwelling takes on the appearance of a cup and
receives the workers’ eggs. (Fig. 34.) These dwellings
are the famous swallows’ nests, so appreciated by the
epicures of the extreme East, which are edible in
the same way as, for example, caviare.
Constructions built of earth — Solitary masons. — Certain
animals, whose dwelling participates in the
nature of a hollow cavern, make additions to it
which claim a place among the constructions with
which we are now occupied.
The Anthophora parietina is in this group; it is
a small bee which lives in liberty in our climate. As
its name indicates, it prefers to frequent the walls of
old buildings and finds a refuge in the interstices,
hollowing out the mortar half disintegrated by time.
The entrance to the dwelling is protected by a tube
curved towards the bottom, and making an external
prominence. (Fig. 35.) The owner comes and goes
by this passage, and as it is curved towards the earth
the interior is protected against a flow of rain, while
at the same time the entry is rendered more difficult
for Melectes and Anthrax. These insects, in fact,
watch the departure of the Anthophora to endeavour
to penetrate into their nests and lay their eggs there.
The gallery of entry and exit has been built with
grains of sand, the débris produced by the insect in
working. These grains of sand glued together form,
on drying, a very resistant wall.101
The other animals of which I have to speak are
genuine masons, who prepare their mortar by tempering
moistened earth. Every one has seen the Swallow
in spring working at its nest in the corner of a window.
It usually establishes its dwelling in an angle, so that
the three existing walls can be utilised, and to have an
enclosed space there is need only to add the face. It
usually gives to this the form of a quarter of a sphere,
and begins it by applying earth more or less mixed with
chopped hay against the walls which are to support
the edifice. At the summit of the construction a hole
is left for entry and exit. During the whole of its
sojourn in our country the Swallow uses this dwelling,
and even returns to it for many years in succession,
as long as its work will support the attacks of time.
The faithful return of these birds to their old nest has
been many times proved by attaching ribbons to their
claws; they have always returned with the distinctive
mark.
The Chalicodoma, whose name of Mason Bee indicates
the industry it exercises, is a hymenopterous
relative to our Bees, long since carefully studied by
Réaumur. It does not live in societies like the latter,
and exhibits individual initiative and skill as great
as the swallows. The females accomplish the work
which I am about to describe. The little cells which
they build are arranged, to the number of eight or
ten together, in the most various places; sometimes
on a pebble, sometimes on a branch, or, again, on a
stone wall. (Fig. 36.) The insect collects earth as
fine as possible, such as the dust of a trodden path,
and tempers it with its own saliva. It places side
by side these little balls of mortar and the work soon
takes the form of a cupola, to the edge of which it
constantly adds new deposits. The sun quickly dries
the hole and gives it the necessary consistence.
When the cell has acquired sufficient height, the
Chalicodoma abandons its occupation of mason, and
visits flowers for pollen and nectar wherewith to fill
the little chamber. It goes back to the nest, disgorges
its supply, and returns to the field, until the
little cup of earth is full to the edge. When the
dwelling is thus prepared and provisioned, the insect
lays an egg there and closes the upper part with a
vault, built by successive deposits over the opening,
which is more and more narrowed until it is finally
shut up. Having completed a chamber, it passes on
to the next, and so on until it has assured the fate of
all its descendants.
This hymenopterous insect certainly shows in its acts
as an artisan an inevitable instinct: hereditary intelligence
has become less personal and less spontaneous.
In certain cases, however, the instinct loses its rigidity
and automatism. Thus, when a Chalicodoma, at the
moment of preparing to accomplish its task, finds an
old nest, still capable of repair although dilapidated,
it does not hesitate to take possession of it and to
silence its assumed innate instinct of building. It
profits by the work already done, and is content to
fill up the cracks or to re-establish the masonry where
defective; then it provisions the renewed cells with
honey, and lays its eggs in them. In certain circumstances
it shows itself still more sparing of trouble,
and boldly rebels against the law which seems to be
imposed on it by nature. If it feels itself sufficiently
strong, the Chalicodoma throws itself on one of its
fellows, a peaceful constructor that has almost completed
its work; it chases it away, and takes possession
of its property to shelter its own eggs. Instead of
manufacturing the cell from bottom to top, it has
only to complete it. Such acts evidently show the
reflection appearing through instinct.
Besides the Swallows, of which I have already
spoken, birds offer us several types of skilful construction
with tempered earth.
The Flamingo, which lives in marshes, cannot
place its eggs on the earth nor in the trunks of trees,
which are often absent from its domain. It builds a
cone of mud, which dries and becomes very resistant,
and it prepares at the summit an excavation open to
the air; this is the nest. The female broods by
sitting with her legs hanging over the sides of the
hillock on which her little family prospers above the
waters and the damp soil.
A Perch in the Danube also manufactures a dwelling
of dried earth. It gives it the form of an elliptic
cupola, and prepares a semicircular opening for
entry and exit.
The bird which shows itself the most skilful mason
is probably the Oven-Bird (Furnarius rufus) of
Brazil and La Plata. Its name is owing to the form
of the nest which it constructs for brooding, and which
has the appearance of an oven. It is very skilful and
knows how to build a dome of clay without scaffolding,
which is not altogether easy. Having chosen for the
site of its labours a large horizontal branch, it brings
to it a number of little clay balls more or less combined
with vegetable débris, works them altogether,
and makes a very uniform floor, which is to serve as a
platform for the rest of the work. When this is done,
and while the foundation is drying, the bird arranges
on it a circular border of mortar slightly inclined outwards.
This becomes hard; it raises it by a new
application, this time inclined inwards. All the other
layers which will be placed above this will also be
inclined towards the interior of the chamber. As the
structure rises, the circle which terminates it above
becomes more and more narrow. Soon it is quite
small, and the animal, closing it with a little ball of
clay, finds itself in possession of a well-made dome.
Naturally it prepares an entrance; the form of this is
semicircular. But this is not all. In the interior it
arranges two partitions: one vertical, the other horizontal,
separating off a small chamber. The vertical
partition begins at one of the edges of the door, so
that the air from without cannot penetrate directly
into the dwelling, which is thus protected against
extreme variations of temperature. It is in the compartment
thus formed that the female lays her eggs
and broods, after having taken care to carpet it with
a thick layer of small herbs.
“In favourable seasons, the Oven-birds begin building
in the autumn,” Hudson tells us, “and the work is
resumed during the winter whenever there is a spell
of mild, wet weather. Some of their structures are
finished early in winter, others not until spring, everything
depending on the weather and the condition of
the birds. In cold, dry weather, and when food is
scarce, they do not work at all. The site chosen is a
stout horizontal branch, or the top of a post, and they
also frequently build on a cornice or the roof of a
house; and sometimes, but rarely, on the ground.
The material used is mud, with the addition of horse
hair or slender fibrous rootlets, which make the
structure harder and prevent it from cracking. I have
frequently seen a bird engaged in building first pick
up a thread or hair, then repair to a puddle, where it
was worked into a pellet of mud about the size of a
filbert, then carried to the nest. When finished the
structure is shaped outwardly like a baker’s oven, only
with a deeper and narrower entrance. It is always
placed very conspicuously, and with the entrance
facing a building, if one be near, or if at a roadside it
looks towards the road; the reason for this being, no
doubt, that the bird keeps a continuous eye on the
movements of people near it while building, and
so leaves the nest opened and unfinished on that side
until the last, and then the entrance is necessarily
formed. When the structure has assumed the globular
form with only a narrow opening, the wall on one
side is curved inwards, reaching from the floor to the
dome, and at the inner extremity an aperture is left
to admit the bird to the interior or second chamber,
in which the eggs are laid. A man’s hand fits easily
into the first or entrance chamber, but cannot be
twisted about so as to reach the eggs in the interior
cavity, the entrance being so small and high up. The
interior is lined with dry soft grass, and five white
pear-shaped eggs are laid. The oven is a foot or
more in diameter, and is sometimes very massive,
weighing eight or nine pounds, and so strong that,
unless loosened by the swaying of the branch, it often
remains unharmed for two or three years. A new
oven is built every year, and I have more than once
seen a second oven built on the top of the first, when
this has been placed very advantageously, as on a
projection and against a wall.”102
Masons working in association. — Ants have already
furnished us with numerous proofs of their intelligence
and their prodigious industry. So remote from Man
from the anatomical point of view, they are of all
animals those whose psychic faculties bring them
nearest to him. Sociable like him, they have undergone
an evolution parallel to his which has placed
them at the head of Insects in the same way as he
has become superior to all other Mammals. The
brain in Ants as in Man has undergone a disproportionate
development. Like Man, they possess a
language which enables them to combine their efforts,
and there is no human industry in which these insects
have not arrived at a high degree of perfection. If in
certain parts of the earth human societies are superior
to those of Ants, in many others the civilisation of
Ants is notably superior. No village of Kaffirs
can be compared to a palace of the Termites. The
classifications separate these insects (sometimes called
“White Ants”) from the Ants, since the latter are
Hymenoptera, while the former are ranked among the
Neuroptera, but their constructions are almost alike,
and may be described together. These small animals,
relatively to their size, build on a colossal scale compared
to Man; even our most exceptional monuments
cannot be placed beside their ordinary buildings.
(Fig. 37.) The domes of triturated and plastered clay
which cover their nests may rise to a height of five
metres; that is to say, to dimensions equal to one
thousand times the length of the worker. The Eiffel
Tower, the most elevated monument of which human
industry can boast, is only one hundred and eighty-seven
times the average height of the worker. It is
three hundred metres high, but to equal the Termites’
audacity, it would have to attain a height of 1,600
metres.
The different species of Termite are not equally
industrious. The T. bellicosus seems to have carried
the art of construction to the highest point. All the
individuals of the species are not alike; there exists
a polymorphism which produces creatures of three
sorts: 1, the soldiers, recognised by their large heads
and long sharp mandibles, moved by powerful
muscles; it is their mission to defend the whole
colony against its adversaries, and the wounds they
can produce, fatal to creatures of their own size, are
painful even to man; 2, the workers, who labour as
navvies and architects, and take charge of the pupæ:
they form the great majority of the community; 3, the
king and queen. (Fig. 38.) To each nest there is
usually only a single fertile and lazy couple. These
two personages do absolutely nothing; the soldiers
and the workers care for them and bring them food.
They have both possessed wings, but these fall off.
The queen reigns but does not govern; she lays.
The king is simply the husband of the queen. The
internal administration of the palace is bound up with
the parts played by these three kinds of beings.
Fig. 38.
1. King before wings are cast off; 2. Worker (neuter); 3. Queen with abdomen distended with eggs; 4. Soldier (neuter); 5. Young (resembling adults).
The lofty nest, or Termitarium, constitutes a hillock
in the form of a cupola. The interior arrangement is
very complicated, and at the same time very well
adapted to the life of the inhabitants. There are four
storeys in all, covered by the general exterior walls.
(Fig. 39.) The walls of the dome are very thick; at
the base they measure from sixty to eighty centimetres.
The clay in drying attains the hardness of brick, and
the whole is very coherent. The sentinels of herds of
wild cattle choose these tumuli as observatories and
do not break them down. The walls of this exterior
enceinte are hollowed by galleries of two kinds: some
horizontal and giving access from outside to all the
storeys; the others mounting spirally in the thickness
of the wall to the summit of the dome. When the
colony is in full activity, after the construction is completed,
these little passages have no further use. They
served for the passage of the masons when building
the cupola; and they could be utilised again if a
breach should be made in the wall. At the lower
part these galleries in the wall are very wide, and they
sink into the earth beneath the palace to a depth of
more than 1 metre 50.
These subterranean passages (c) are the catacombs
of the Termites, and have a very close analogy with
those of old and populous human cities. Their origin
is similar; they are ancient quarries. The insects
hollowed them in obtaining the necessary clay for
their labours. Later, when the rains come, they serve
as drains to carry off the water which might threaten
to invade the dwelling.
Such is the external wall within which a busy
population swarms. On passing to the interior let us
first enter the ground-floor. In the centre is found
the royal chamber (r). The walls are extremely strong
and are supplied with windows for ventilation, and
with doors to enable the Termites to render their
services. It is necessary to renew the air in this
chamber, which constantly contains more than two
thousand insects. The openings are large enough for
the passage of the workers, but the queen cannot
pass through them. She is therefore a prisoner, as
immured as a goddess in her temple. The chain
which holds her is the prodigious development of her
abdomen. As a virgin she could enter, when fertilised
she cannot henceforth go out. She continuously
elaborates eggs; every moment one appears at the
orifice of the oviduct. The king remains near her,
to give his assistance when occasion arises; hence he
has received the title, absolutely justified under the
circumstances, of Father of the People. Around the
couple zealous attendants crowd. There are about
two thousand of them, workers and soldiers, licking
the two royal captives to remove any dust from
their hairs, and bringing them food. As soon as the
queen lays an egg, one of the workers hastens to
take it gently between its jaws; it is the property of
the state, and is carefully carried off to the second
storey where the state nursery is situated.
The centre of the ground-floor, therefore, is occupied
by the royal apartment; around this, and
communicating with it by means of numerous
entrances, are a number of cells used by the attendants
on the queen (s). These little chambers are surrounded
by a labyrinth of passages. The central
room and its dependencies constitute a solid mass,
around which other chambers are grouped. The
whole space between it and the general wall is filled
by vast storehouses, divided into many very spacious
compartments. Within them are piled up the
provisions which the Termites harvest every day;
they consist especially of gums and the juices of
plants, dried and pulverised so as to form a fine
powder. Access to this property is given by means
of large corridors which cross one another, and conduct
to the outside through the horizontal galleries
traversing the wall.
Above the whole of this ground-floor rests a thick
vault of clay, which forms a strong floor for the first
storey (B). This is composed of only a single room;
it is put to no use, unless to isolate and support the
apartments of the second floor, in the arrangement of
which great care is exercised. There are no partitions
on this floor, nothing but massive columns of clay
to support the ceiling. These columns are more than
a metre in height. It is a gigantic cathedral in which
the lilliputian architects have displayed considerable
art. By means of this immense empty chamber a
huge reservoir of air is placed in the very centre of the
construction; through the galleries in the external
wall it is sufficiently renewed for the purposes of
respiration without too great a change in temperature.
The second storey rests on the first. To this the
eggs are brought, and here the larvæ go through
their evolution. Partitions of clay divide the space
into a few large halls (a); these are again subdivided,
this time not by earth, which is employed throughout
the rest of the building, but by materials of a more
delicate kind, which are, moreover, very bad conductors
of heat (b). It is a question, in fact, of
maintaining these little chambers at an almost constant
temperature, favourable for the development of
the eggs. The substances utilised for this purpose
are fragments of wood and of gum. The Termites
glue them together and thus form the walls of these
important cells.
The arrangement of the top storey (D) is also
disposed with a view of protecting the young who
are the future of the city. It constitutes the attic,
situated just beneath the cupola, and contains
absolutely nothing; it simply serves to interpose
beneath the summit of the edifice and the storey
below a layer of air, which is a bad conductor of heat.
The chamber devoted to the young is thus placed
between two gaseous layers, a precaution which,
combined with the choice of material, places it in the
very best conditions for protection against the alternation
of cold at night and torrid heat during the
day.
It is difficult to know which to admire most — the
audacity and vastness of the labour undertaken by
these insects, or the ingenious foresight by which they
ensure to their delicate larvæ a comfortable youth.
There can be no doubt that these animals show themselves
very superior to Man, taking into consideration
his enormous size compared to theirs, in the art of
building. Pillars, cupolas, vaults — nothing is too
difficult or too complicated for these small and patient
labourers.103
The Ants of our own lands do not yield to the
Termites in this industry, and their dwellings are
models of architecture. As they have been more
carefully studied we know more exactly how they
work, and the considerable sum of intelligence and
initiative which they reveal in the accomplishment
of their task. At the foot of hedges, on the outskirts
of woods, they raise their frail monuments. The
species are not equally skilful, and such differences as
we have found in other industries may also be found
here. In a general manner it was soon found that
Ants do not, like Bees, obey a rigid instinct which
ordains the line of conduct under every circumstance,
and impels each individual to act so that his efforts
are naturally combined and harmonised with those of
his neighbours in the workshop. One soon perceives
when observing an ant-hill that any individual insect
follows, when working, a personal idea which it has
conceived, and which it realises without troubling
itself about the others. Often these latter are executing
a quite contradictory plan. It is rather an
anarchistic republic. Happily Ants are not obstinate,
and when they see the idea of one of them disengaging
itself from the labour commenced, they are
content to abandon their own less satisfactory idea
and to collaborate in the other’s work. They are
able, for the rest, to concert plans; the movements of
their antennæ are a very complicated language containing
many expressions, and the worker who desires the
acceptance of his own point of view is not sparing in
their use.104 It sometimes happens that his efforts are
vain, and that his companions manœuvre to thwart
his schemes. In the presence of such resistance those
who are determined to obtain the adoption of their
own plans destroy the labours of their opponents;
fierce struggles ensue, and here it is the strongest who
becomes the architect-general.
The Formica fusca constructs its nest of plastered
earth. The different superimposed storeys have
been added one by one to the upper part of the old
dwelling when the latter became too small for the
growing colony. In opening an ant-hill, they are
found to be quite distinct from each other; each is
divided by a large number of partitions into vaulted
compartments. In the larger ones pillars of earth
support the ceiling. The rooms communicate with
one another by means of bull’s-eye passages formed
in the separating walls. The whole is small, proportioned
to the size of the works, but excellently
arranged.
When, in the council of the republic, it has been
resolved to raise a common habitation, the workers
operate in a singular manner. All the ants scatter
themselves abroad, and with extreme activity take
fragments of earth between their mandibles and place
them on the summit of the dwelling. After some
time the result of this microscopical work appears.
The ancient roof, strengthened by all this material,
becomes a thick terrace which the insects first cover
very evenly. The earth, having been brought in grain
by grain, is soft and easy to dig. The construction of
the new storey begins at first by the hollowing out
of a number of trenches. The ants scrape away in
places the terrace which they have just made. They
thus diminish the thickness of the layer at the spots
where rooms, corridors, etc., are to be formed, and
with the material thus obtained they form walls,
partitions, and pillars. Soon the entire plan of the
new storey may be perceived. It differs essentially
from that which Man would adopt; in the latter case
the walls would be shown by the hollowing out of the
foundations; the work of these Hymenoptera, on the
contrary, shows them in relief. These first arrangements
made, the six-footed architects have only to
complete their constructions by new deposits from
without. Gradually the storey reaches a sufficient
height. It remains to cover it, and this is not the
easiest part of the business. The ceiling is formed
of vaults going from one wall to another, or from a
wall to a column. When one of these vaults is to be
small, some millimetres at the most, the Formica fusca
constructs it with the help of two ledges, which are
made facing each other on the tops of two partitions.
These prominences, formed of materials glued together
by saliva, are enlarged by additions to their
free edges. They advance to meet each other and
soon join; it is wonderful to see each insect, following
its individual initiative, profit by every twig or
fragment capable of bearing any weight, in order to
enlarge the overhanging ledges.
Individual skill and reflection. — This personality in
work, which reveals the intelligent effort of each, has
certainly its inconveniences for the common work.
Badly-concerted operations may not succeed, and
Huber witnessed an accident due to this cause.105 Two
walls facing each other were to be united by an arch.
A foolish worker had begun to form a horizontal
ledge on the summit of one of the walls without
paying attention to the fact that the other wall was
very much higher. By continuing the project the
ceiling would have come against the middle of the
opposite ceiling instead of resting on its summit.
Another ant passes, examines affairs with an intelligent
air, and evidently considers that this sort of
work is absurd. Without consideration for the
amour-propre of its unskilful fellow-citizen, it demolishes
its work, raises the wall that is too low, and
re-makes the construction correctly in the presence
of the observer. If this incident reveals inconceivable
thoughtlessness in one of the members of this serious
republic, it also brings to light the judgment, reflection,
and decision of which they are capable, as well
as a freedom which cannot be found in the works of
instinct.
This Formica fusca sometimes finds itself in the
presence of other difficulties. It may happen that
the hall to be roofed is too large and the arch too
considerable to allow of the cohesion of the materials
employed. The insects soon become aware of the
existence of this embarrassing state of things and
remedy it in various ways, either by hastily constructing
pillars in the centre of the too large room,
or by some other method. Ebrard describes an
artifice he has seen employed, which shows to what
an extent ants can quickly appreciate and take
advantage of the most unforeseen circumstances.106
A worker was labouring to cover a large cell; two
prominences, parts of opposite walls, were advancing
towards each other, but there was still a space of
from twelve to fifteen millimetres between them, and
it seemed no longer possible to burden the two sides
without risking a general downfall. The little mason
was much disturbed. A graminaceous plant was growing
near. The ant seemed anxious to take advantage
of it, for it went to it and climbed up the stalk. After
having examined and devised, it set about curving
it in the direction of the edifice. To attain this
object, it placed a little mass of moist earth on the
extremity of the leaf, and fixed it there. Under the
influence of this weight flexion was produced, but
only at the end. This could not satisfy the insect;
it became a question of decreasing the resistance at
the base. The ant gnawed a little at this spot; the
desired result was attained, and the whole length of
the leaf became bent over the building in course of
construction. To prevent it bending back, and to
ensure its remaining adherent to the roof, the worker
returned to the plant and placed earth between the
sheath and the stalk. This time all difficulties were
surmounted, and there was a solid scaffolding to
support the materials for the roof.
Among the Lasius niger the independence of the
workers is perhaps still greater; no doubt they do
their best to concert their efforts, but they do not
succeed so well as if an inevitable instinct impelled
them. Notwithstanding the irregularities of the construction,
it is possible to recognise in it a whole
formed of hollowed, concentric half-spheres; they
have been added one after the other to the surface to
increase the dwelling. The interval between these
clay spheres constitutes a storey, cut up by the partitions
which divide it into chambers and communicating
galleries; the roofs of the largest halls are
supported by numerous pillars. (Fig. 40.)
These ants, as Huber has shown, are highly
accomplished in the art of constructing a cupola.
When they wish to increase their nest by a new
layer, they take advantage of the first wet day, the
rain serving to agglutinate and unite the materials.
They operate in almost the same way as the Formica
fusca, though exhibiting more skill and resource as
architects; they know better how to calculate beforehand
the number of pillars required in a hall of a
determined size. As soon as the rain has given the
signal for work, they spread themselves abroad and
prepare a very thick terrace on the external surface
of the dwelling which has become too small. They
carry to it small balls of earth ground very fine by
their jaws, and then lightly piled up so as to pulverise
afresh; these are then spread over the construction
with the anterior
legs. Then, by
hollowing out,
the ants trace
the plan of the
new storey,
leaving the walls,
partitions, and
columns in relief.
After having
raised these
parts to a sufficient
height, all
work together to
cover them with
a general ceiling,
each ant
applying itself to
one small corner
of the work.
The vaulting is
executed by the
method already
described; horizontal ledges, slanting from the summit
of pillar or wall, are formed to meet one another. The
insects are intelligent enough to begin their labour at
the spots best fitted to give strong support to the overhanging
materials, as for instance, at the angle of two
walls. There is so much activity among the workers,
and they are so anxious to take advantage of the
damp, that the storey is sometimes completely
finished in seven or eight hours. If the rain suddenly
stops in the course of the work, they abandon operations,
to complete them as soon as another shower falls.
I have already had occasion to speak of the covered
passages and Aphis-pens built by Ants outside their
dwellings. Besides these constructions, they also
make roads in the fields, tearing up the grass and
hollowing out the earth so as to form a beaten path
free from the lilliputian bushes in which there would
be danger of becoming entangled, on returning to the
nest laden with various and often embarrassing burdens.
Nor are Ants by any means alone in exhibiting
the results of individual skill and reflection. It will,
however, be sufficient to mention only one other
example, that furnished by Spiders. McCook, in his
great work, after elaborately describing and carefully
illustrating the skill exhibited in individual cases by
Spiders in their aërial labours, considers himself
justified in concluding as follows: — “The manner in
which the ends of the radii which terminate upon the
herb are wrapped roundabout and braced by the
notched zone; the manner in which the wide non-viscid
scaffold lines are woven in order to give
vantage ground from which to place the close-lying
and permanent viscid spirals, upon which the usefulness
of the orb depends — all these, to mention no
other points, seem to indicate a very delicate perception
of those modes (shall I also say principles?)
of construction which are continually recognised
in the art of the builder, the architect, and the
engineer.”107
Dwellings built of hard materials united by mortar. — Among
mammals few animals have become so
skilful in the art of building houses as the insects
we have just been considering. There are, however,
two who equal if they do not surpass them — the
Musk-rat and its relative, the Beaver.
The Musk-rats of Canada live in colonies on the
banks of streams or deep lakes, and construct dwellings
which are very well arranged. In their methods
we find combined the woven shelter with the house of
built earth. Their cabins are established over the
highest level of the water and look like little domes.
In building them the animals begin by placing reeds
in the earth; these they interlace and weave so as to
form a sort of vertical mat. They plaster it externally
with a layer of mud, which is mixed by means of the
paws and smoothed by the tail. At the upper part of
the hut the reeds are not pressed together or covered
with earth, so that the air may be renewed in the interior.
A dwelling of this kind, intended to house six
or eight individuals who have combined to build it,
may measure up to 65 centimetres in diameter. There
is no door directly opening on to the ground. A subterranean
gallery starts from the floor and opens out
beneath the water. It presents secondary branches,
some horizontal, through which the animal goes in
search of roots for food, while others descend vertically
to pits specially reserved for the disposal of
ordure.
But it is, above all, the Beaver (Castor fiber) who
exhibits the highest qualities as an engineer and
mason. This industrious and sagacious Rodent is well
adapted to inconvenience the partisans of instinct as
an entity, apart from intelligence, which renders
animals similar to machines and impels them to
effect associated acts, without themselves being able
to understand them, and with a fatality and determination
from which they can under no circumstance
escape.
Beavers now only live in Canada. A few individuals
may, however, still be found on the banks of
the lower Rhône, in Camargue, and on a few other
European rivers. Several centuries ago they existed
in the neighbourhood of Paris in considerable numbers.
The Bièvre gained its name from the old French word
for Beaver, and its resemblance to the English name,
as well as to the German (Biber), is striking. In the
sixteenth century, according to Bishop Magnus of
Upsala, the Beaver was still common on the banks
of the Rhine, the Danube, and on the shores of the
Black Sea, and in the North it still exercised great
art in its constructions. In the twelfth century it
was found in Scotland and Wales. If we go back to
ancient times, we find that Herodotus mentions that
the Budini who lived in the neighbourhood of the Black
Sea used the skins of the Beavers, which abounded
there, on the borders of their garments; and in the
time of Pliny the Beaver was so common there that
he speaks of it as the Pontic Beaver. Fossil remains
of the Beaver have also been found throughout
Europe in conjunction with those of the Mammoth
and other extinct animals.
But the civilisation of the Beaver has perished in
the presence of Man’s civilisation, or rather of his
persecution. In regions where it is tracked and
disturbed by Man the Beaver lives in couples, and is
content to hollow out a burrow like the Otter’s, instead
of showing its consummate art. It merely vegetates,
fleeing from enemies who are too strong for it, and
depriving itself of a dangerous comfort. But when
the security of solitude permits these animals to
unite in societies, and to possess, without too much
fear, a pond or a stream, they then exhibit all their
industry.
They build very well arranged dwellings, although
at first sight they look like mere piles of twigs,
branches, and logs, heaped in disorder on a small
dome of mud. At the edge of a pond each raises
his own lodge, and there is no work by the colony in
common. If, however, there is a question of inhabiting
the bank of a shallow stream, certain preliminary
works become necessary. The rodents establish a
dam, so that they may possess a large sheet of water
which may be of fair depth, and above all constant,
not at the mercy of the rise and fall of the stream. A
sudden and excessive flood is the one danger likely to
prove fatal to these dykes; but even our own constructions
are threatened under such circumstances.
When the Beavers, tempted by abundance of
willows and poplars, of which they eat the bark and
utilise the wood in construction, have chosen a site,
and have decided to establish a village on the edge of
the water, there are several labours to be successively
accomplished. Their first desire is to be in possession
of a large number of felled trunks of trees. To
obtain them they scatter themselves in the forest
bordering the stream and attack saplings of from
twenty to thirty centimetres in diameter. They are
equipped for this purpose. With their powerful
incisors, worked by strong jaws, they can soon gnaw
through a tree of this size. But they are capable of
attacking trees, even more than 100 cc. in circumference
and some forty metres in height, with great
skill and adaptability; “no better work could be accomplished
by a most highly-finished steel cutting tool,
wielded by a muscular human arm” (Martin). They
operate seated on their hind quarters, and they make
their incision in the wood with a feather edge. It
was once supposed that they always take care so to
direct their wood-cutting task that the tree may fall
on the water-side, but this is by no means the case,
and appears to be simply due, as Martin points out,
to the fact that trees by the water-side usually slope
towards the water. The austerity of labour alternates,
it may be added, with the pleasures of the table.
From time to time the Beavers remove the bark of the
fallen trees, of which they are very fond, and feed on it.
Mr. Lewis H. Morgan studied the American Beaver
with great care and thoroughness, more especially on
the south-west shore of Lake Superior; he devotes
fifty pages to the dams, and it is worth while to quote
his preliminary remarks regarding them. “The dam
is the principal structure of the beaver. It is also the
most important of his erections as it is the most
extensive, and because its production and preservation
could only be accomplished by patient and long-continued
labour. In point of time, also, it precedes the
lodge, since the floor of the latter and the entrances
to its chamber are constructed with reference to the
level of the water in the pond. The object of the
dam is the formation of an artificial pond, the principal
use of which is the refuge it affords to them when
assailed, and the water-connection it gives to their
lodges and to their burrows in the banks. Hence, as
the level of the pond must, in all cases, rise from one
to two feet above these entrances for the protection of
the animal from pursuit and capture, the surface-level
of the pond must, to a greater or less extent, be
subject to their immediate control. As the dam is
not an absolute necessity to the beaver for the maintenance
of his life, his normal habitation being rather
natural ponds and rivers, and burrows in their banks,
it is, in itself considered, a remarkable fact that he
should have voluntarily transferred himself, by means
of dams and ponds of his own construction, from a
natural to an artificial mode of life.
“Some of these dams are so extensive as to forbid
the supposition that they were the exclusive work of
a single pair, or of a single family of beavers; but it
does not follow, as has very generally been supposed,
that several families, or a colony, unite for the joint
construction of a dam. After careful examination of
some hundreds of these structures, and of the lodges
and burrows attached to many of them, I am altogether
satisfied that the larger dams were not the
joint-product of the labour of large numbers of
beavers working together, and brought thus to immediate
completion; but, on the contrary, that they
arose from small beginnings, and were built upon
year after year, until they finally reached that size
which exhausted the capabilities of the location;
after which they were maintained for centuries, at
the ascertained standard, by constant repairs. So far
as my observations have enabled me to form an
opinion, I think they were usually, if not invariably,
commenced by a single pair, or a single family of
beavers; and that when, in the course of time, by
the gradual increase of the dam, the pond had
become sufficiently enlarged to accommodate more
families than one, other families took up their residence
upon it, and afterwards contributed by their
labour to its maintenance. There is no satisfactory
evidence that the American beavers either live or
work in colonies; and if some such cases have been
observed, it will either be found to be an exception
to the general rule, or in consequence of the sudden
destruction of a work upon the maintenance of which
a number of families were at the time depending.
“The great age of the larger dams is shown by their
size, by the large amount of solid materials they
contain, and by the destruction of the primitive forest
within the area of the ponds; and also by the extent
of the beaver-meadows along the margins of the
streams where dams are maintained, and by the
hummocks formed upon them by and through the
annual growth and decay of vegetation in separate
hills. These meadows were undoubtedly covered
with trees adapted to a wet soil when the dams were
constructed. It must have required long periods of
time to destroy every vestige of the ancient forest by
the increased saturation of the earth, accompanied
with occasional overflows from the streams. The
evidence from these and other sources tends to show
that these dams have existed in the same places for
hundreds and thousands of years, and that they have
been maintained by a system of continuous repairs.
“At the place selected for the construction of a dam,
the ground is usually firm and often stony, and when
across the channel of a flowing stream, a hard rather
than a soft bottom is preferred. Such places are
necessarily unfavourable for the insertion of stakes
in the ground, if such were, in fact, their practice in
building dams. The theory upon which beaver-dams
are constructed is perfectly simple, and involves no
such necessity. Soft earth, intermixed with vegetable
fibre, is used to form an embankment, with sticks,
brush, and poles embedded within these materials to
bind them together, and to impart to them the
requisite solidity to resist the effects both of pressure
and of saturation. Small sticks and brush are used,
in the first instance, with mud and earth and stones
for down-weight. Consequently these dams are extremely
rude at their commencement, and they do
not attain their remarkably artistic appearance until
after they have been raised to a considerable height,
and have been maintained, by a system of annual
repairs, for a number of years.”108
There are two different kinds of beaver-dams,
although they are both constructed on the same
principle. One, the stick-dam, consists of interlaced
stick and pole work below, with an embankment of
earth raised with the same material upon the upper
or water face. This is usually found in brooks or
large streams with ill-defined banks. The other, the
solid-bank dam, is not so common nor so interesting,
and is usually found on those parts of the same
stream where the banks are well defined, the
channel deep, and the current uniform. In this kind
the earth and mud entirely buries the sticks and
poles, giving the whole a solid appearance. In the
first kind the surplus water percolates through the
dam along its entire length, while in the second it is
discharged through a single opening in the crest
formed for that purpose.
The materials being prepared in the manner I have
previously described, the animals make ready to
establish their dyke. They intermix their materials — driftwood,
green willows, birch, poplars, etc. — in the
bed of the river, with mud and stones, so making
a solid bank, capable of resisting a great force of
water; sometimes the trees will shoot up forming
a hedge. The dam has a thickness of from three to
four metres at the base, and about sixty centimetres
at the upper part. The wall facing up-stream is
sloping, that directed down-stream is vertical; this is
the best arrangement for supporting the pressure of
the mass of water which is thus expended on an
inclined surface. In certain cases Beavers carry
hydraulic science still further. If the course of the
water is not very rapid, they generally make an
almost straight dyke, perpendicular to the two banks,
as this is then sufficient; but if the current is strong,
they curve it so that the convexity is turned up-stream.
In this way it is much better fitted to resist.
Thus they do not always act in the same way, but
arrange their actions so as to adapt them to the
conditions of the environment.
The embankment being completed, the animals
construct their lodges. Fragments of wood, deprived
of the bark, are arranged and united by clay or mud
which the Beavers take from the riverside, transport,
mix, and work with their fore-paws. During a single
night they can collect as much mud at their houses as
amounts to some thousands of their small handfuls.
They thus plaster their houses with mud every
autumn; in the winter this freezes as hard as a stone
and protects them from enemies. These cabins form
domes from three to four metres in diameter at the
base, and from two to two and a half metres in
height. The floor is on a level with the surface of
the artificial pond. A passage sinks in the earth and
opens about one and a half metres below the level of
the water, so that it cannot be closed up by ice during
the severe winters of these regions.
Within, near the entry, the beavers form, with the
aid of a partition, a special compartment to serve as a
storehouse, and they there pile up enormous heaps of
nenuphar roots as provisions for the days when ice and
snow will prevent them from barking the young trunks.
A dwelling of this kind may last for three or four
years, and the animal here tranquilly enjoys the fruits
of its industry, as long as man fails to discover the
retreat; for the beaver can escape by swimming from
all carnivorous animals excepting, perhaps, the Otter.
During floods the level of the water nearly reaches the
hut; if the inundation is prolonged and the animal
runs the risk of being asphyxiated beneath his dome,
it breaks through the upper part with its teeth and
escapes. When the water returns to its bed the
beaver comes back, makes the necessary repairs, and
resumes the usual peaceful course of its life.109
We have thus seen, from a shapeless hole to these
complex dwellings, every possible stage; we have
found among animals the rudiments of the different
human habitations, certain animals, indeed, having
arrived at a degree of civilisation which Man himself
in some countries has not yet surpassed, or even
indeed yet attained.