Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
It is only when one appreciates the cenogenetic processes in relation
to the palingenetic, and when one takes careful account of the changes
which the latter may suffer from the former, that the radical
importance of the biogenetic law is recognised, and it is felt to be
the most illuminating principle in the science of evolution. In this
task of discrimination it is the silver thread in relation to which we
can arrange all the phenomena of this realm of marvels—the “Ariadne
thread,” which alone enables us to find our way through this labyrinth
of forms. Hence the brothers Sarasin, the zoologists, could say with
perfect justice, in their study of the evolution of the _Ichthyophis,_
that “the great biogenetic law is just as important for the zoologist
in tracing long-extinct processes as spectrum analyses is for the
astronomer.”
Even at an earlier period, when a correct acquaintance with the
evolution of the human and animal frame was only just being
obtained—and that is scarcely eighty years ago!—the greatest
astonishment was felt at the remarkable similarity observed between the
embryonic forms, or stages of fœtal development, in very different
animals; attention was called even then to their close resemblance to
certain fully-developed animal forms belonging to some of the lower
groups. The older scientists (Oken, Treviranus, and others) knew
perfectly well that these lower forms in a sense illustrated and fixed,
in the hierarchy of the animal world, a temporary stage in the
evolution of higher forms. The famous anatomist Meckel spoke in 1821 of
a “similarity between the development of the embryo and the series of
animals.” Baer raised the question in 1828 how far, within the
vertebrate type, the embryonic forms of the higher animals assume the
permanent shapes of members of lower groups. But it was impossible
fully to understand and appreciate this remarkable resemblance at that
time. We owe our capacity to do this to the theory of descent; it is
this that puts in their true light the action of _heredity_ on the one
hand and _adaptation_ on the other. It explains to us the vital
importance of their constant reciprocal action in the production of
organic forms. Darwin was the first to teach us the great part that was
played in this by the ceaseless struggle for existence between living
things, and to show how, under the influence of this (by natural
selection), new species were produced and maintained solely by the
interaction of heredity and adaptation. It was thus Darwinism that
first opened our eyes to a true comprehension of the supremely
important relations between the two parts of the science of organic
evolution—Ontogeny and Phylogeny.
Public-domain text, read in full here on John Shaqi.
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