On the Origin of Species By Means of Natural Selection: Or, the Preservation of Favoured Races in the Struggle for LifeDarwin, Charles
Science
On the Origin of Species By Means of Natural Selection: Or, the Preservation of Favoured Races in the Struggle for Life
Darwin, Charles
Evolution (Biology); Natural selection
By this singular manner of building,
strength is continually given to the comb, with the utmost ultimate
economy of wax.
It seems at first to add to the difficulty of understanding how the
cells are made, that a multitude of bees all work together; one bee
after working a short time at one cell going to another, so that, as
Huber has stated, a score of individuals work even at the commencement
of the first cell. I was able practically to show this fact, by
covering the edges of the hexagonal walls
of a single cell, or the extreme margin of the circumferential rim of a
growing comb, with an extremely thin layer of melted vermilion wax; and
I invariably found that the colour was most delicately diffused by the
bees—as delicately as a painter could have done with his brush—by atoms
of the coloured wax having been taken from the spot on which it had
been placed, and worked into the growing edges of the cells all round.
The work of construction seems to be a sort of balance struck between
many bees, all instinctively standing at the same relative distance
from each other, all trying to sweep equal spheres, and then building
up, or leaving ungnawed, the planes of intersection between these
spheres. It was really curious to note in cases of difficulty, as when
two pieces of comb met at an angle, how often the bees would entirely
pull down and rebuild in different ways the same cell, sometimes
recurring to a shape which they had at first rejected.
When bees have a place on which they can stand in their proper
positions for working,—for instance, on a slip of wood, placed directly
under the middle of a comb growing downwards so that the comb has to be
built over one face of the slip—in this case the bees can lay the
foundations of one wall of a new hexagon, in its strictly proper place,
projecting beyond the other completed cells. It suffices that the bees
should be enabled to stand at their proper relative distances from each
other and from the walls of the last completed cells, and then, by
striking imaginary spheres, they can build up a wall intermediate
between two adjoining spheres; but, as far as I have seen, they never
gnaw away and finish off the angles of a cell till a large part both of
that cell and of the adjoining cells has been built. This capacity in
bees of laying down under certain circumstances a rough wall in its
proper place between two just-commenced
cells, is important, as it bears on a fact, which seems at first quite
subversive of the foregoing theory; namely, that the cells on the
extreme margin of wasp-combs are sometimes strictly hexagonal; but I
have not space here to enter on this subject. Nor does there seem to me
any great difficulty in a single insect (as in the case of a
queen-wasp) making hexagonal cells, if she work alternately on the
inside and outside of two or three cells commenced at the same time,
always standing at the proper relative distance from the parts of the
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