The Foundations of the Origin of Species: Two Essays written in 1842 and 1844Darwin, Charles
Philosophy
The Foundations of the Origin of Species: Two Essays written in 1842 and 1844
Darwin, Charles
Evolution (Biology); Natural selection
I may take this opportunity of remarking that naturalists have observed
that in most of the great classes a series exists from very complicated
to very simple beings; thus in Fish, what a range there is between the
sand-eel and shark,--in the Articulata, between the common crab and the
Daphnia{479},--between the Aphis and butterfly, and between a mite and a
spider{480}. Now the observation just made, namely, that selection might
tend to simplify, as well as to complicate, explains this; for we can
see that during the endless geologico-geographical changes, and
consequent isolation of species, a station occupied in other districts
by less complicated animals might be left unfilled, and be occupied by a
degraded form of a higher or more complicated class; and it would by no
means follow that, when the two regions became united, the degraded
organism would give way to the aboriginally lower organism. According to
our theory, there is obviously no power tending constantly to exalt
species, except the mutual struggle between the different individuals
and classes; but from the strong and general hereditary tendency we
might expect to find some tendency to progressive complication in the
successive production of new organic forms.
{479} Compare _Origin_, Ed. i. p. 419, vi. p. 575.
{480} <Note in original.> Scarcely possible to distinguish between
non-development and retrograde development.
_Modification by selection of the forms of immature animals._
I have above remarked that the feline{481} form is quite of secondary
importance to the embryo and to the kitten. Of course, during any great
and prolonged change of structure in the mature animal, it might, and
often would be, indispensable that the form of the embryo should be
changed; and this could be effected, owing to the hereditary tendency at
corresponding ages, by selection, equally well as in mature age: thus if
the embryo tended to become, or to remain, either over its whole body or
in certain parts, too bulky, the female parent would die or suffer more
during parturition; and as in the case of the calves with large hinder
quarters{482}, the peculiarity must be either eliminated or the species
become extinct. Where an embryonic form has to seek its own food, its
structure and adaptation is just as important to the species as that of
the full-grown animal; and as we have seen that a peculiarity appearing
in a caterpillar (or in a child, as shown by the hereditariness of
peculiarities in the milk-teeth) reappears in its offspring, so we can
at once see that our common principle of the selection of slight
accidental variations would modify and adapt a caterpillar to a new or
changing condition, precisely as in the full-grown butterfly. Hence
probably it is that caterpillars of different species of the Lepidoptera
differ more than those embryos, at a corresponding early period of life,
do which remain inactive in the womb of their parents. The parent during
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