Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
In turning from the embryology to the phylogeny of man—from the
development of the individual to that of the species—we must bear in
mind the direct causal connection that exists between these two main
branches of the science of human evolution. This important causal nexus
finds its simplest expression in “the fundamental law of organic
development,” the content and purport of which we have fully considered
in the first chapter. According to this biogenetic law, ontogeny is a
brief and condensed recapitulation of phylogeny. If this compendious
reproduction were complete in all cases, it would be very easy to
construct the whole story of evolution on an embryonic basis. When we
wanted to know the ancestors of any higher organism, and, therefore, of
man—to know from what forms the race as a whole has been evolved we
should merely have to follow the series of forms in the development of
the individual from the ovum; we could then regard each of the
successive forms as the representative of an extinct ancestral form.
However, this direct application of ontogenetic facts to phylogenetic
ideas is possible, without limitations, only in a very small section of
the animal kingdom. There are, it is true, still a number of lower
invertebrates (for instance, some of the Zoophyta and Vermalia) in
which we are justified in recognising at once each embryonic form as
the historical reproduction, or silhouette, as it were, of an extinct
ancestor. But in the great majority of the animals, and in the case of
man, this is impossible, because the embryonic forms themselves have
been modified through the change of the conditions of existence, and
have lost their original character to some extent. During the
immeasurable course of organic history, the many millions of years
during which life was developing on our planet, secondary changes of
the embryonic forms have taken place in most animals. The young of
animals (not only detached larvæ, but also the embryos enclosed in the
womb) may be modified by the influence of the environment, just as well
as the mature organisms are by adaptation to the conditions of life;
even species are altered during the embryonic development. Moreover, it
is an advantage for all higher organisms (and the advantage is greater
the more advanced they are) to curtail and simplify the original course
of development, and thus to obliterate the traces of their ancestors.
The higher the individual organism is in the animal kingdom, the less
completely does it reproduce in its embryonic development the series of
its ancestors, for reasons that are as yet only partly known to us. The
fact is easily proved by comparing the different developments of higher
and lower animals in any single stem.
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