Butterflies and Moths (British)Furneaux, William S.
Science
Butterflies and Moths (British)
Furneaux, William S.
Butterflies -- Great Britain; Moths -- Great Britain
A large number of other exceptions to the general rule are to be found
in the caterpillars of the Geometer Moths (page 268), one of which is
here represented. These have generally only two pairs of claspers, one
pair on each of the tenth and last segments, so that there is a distance
equal to the combined length of six segments between the hindermost true
leg and the first pair of claspers. But even among the Geometers there
are variations to be observed in the number of claspers, and some of
these will be pointed out in our brief descriptions of the commoner
species.
[Illustration: FIG. 24.--CATERPILLAR OF THE IRON PROMINENT MOTH
(_Dromedarius_).]
[Illustration: FIG. 25.--LARVA OF THE BRIMSTONE MOTH (_Luteolata_).]
These limbs which we have been calling claspers are known by several
other names. Thus they are termed 'pro-legs,' 'temporary legs,' 'false
legs,' and 'abdominal legs;' but if you watch a caterpillar as it walks
up a stalk or along the edge of a leaf, you will certainly agree that
the term 'clasper' is everything that could be desired. But why not call
them legs, seeing that they are used in walking? The reason is that they
differ in many respects from the three foremost pairs of limbs as
regards structure, persistency, and function. The true legs, as we have
called them, continue to exist, though concealed, in the chrysalis
state, and again appear, far more perfectly developed, in the butterfly
or moth, but the claspers are no more to be seen after the caterpillar
has passed into the quiescent stage. We have noticed, too, that the true
legs are pointed and clawed, also that they are protected by a hard and
horny covering; but examine a large caterpillar, holding it between the
fingers and thumb with its under side uppermost, and you will soon see
that the claspers are not at all hard, but soft and fleshy; not pointed,
but often terminating in a broad flat circular surface. You will also
observe, as the creature struggles to escape from your grasp, and tries
to get a hold on something with its claspers, that these limbs, if we
may so call them, are retractile, and are sometimes completely drawn
into the body. Finally, examine the broad end of a clasper with a
magnifier, and you will see it surrounded by a circle of little hooks,
turning in all directions. You will no longer wonder how it is that a
caterpillar can hold so tenaciously to a piece of twig that it is often
almost impossible to remove it without injury.
Now put your caterpillar down, so that you may observe its gait. If it
happens to be one with the full complement of sixteen limbs, you see
that at each stride it makes but little progress. The segments contract
and relax alternately and in succession, thus sending a series of
wave-like motions along the body, and urging onward the front segments
while the claspers keep the hinder portion firmly fixed.
[Illustration: FIG. 26.--THE CLASPERS OF A CATERPILLAR.]
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