Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
Hence each of the sedimentary strata has its characteristic fossils,
the remains of the animals and plants that lived during that particular
period of the earth’s history. When we make a comparative study of
these strata, we can survey the whole series of such periods. All
geologists are now agreed that we can demonstrate a definite historical
succession in the strata, and that the lowest of them were deposited in
very remote, and the uppermost in comparatively recent, times. However,
there is no part of the earth where we find the series of strata in its
entirety, or even approximately complete. The succession of strata and
of corresponding historical periods generally given in geology is an
ideal construction, formed by piecing together the various partial
discoveries of the succession of strata that have been made at
different points of the earth’s surface (cf. Chapter XVIII).
We must act in this way in constructing the phylogeny of man. We must
try to piece together a fairly complete picture of the series of our
ancestors from the various phylogenetic fragments that we find in the
different groups of the animal kingdom. We shall see that we are really
in a position to form an approximate picture of the evolution of man
and the mammals by a proper comparison of the embryology of very
different animals—a picture that we could never have framed from the
ontogeny of the mammals alone. As a result of the above-mentioned
cenogenetic processes—those of disturbed and curtailed heredity—whole
series of lower stages have dropped out in the embryonic development of
man and the other mammals especially from the earliest periods, or been
falsified by modification. But we find these lower stages in their
original purity in the lower vertebrates and their invertebrate
ancestors. Especially in the lowest of all the vertebrates, the
lancelet or Amphioxus, we have the oldest stem-forms completely
preserved in the embryonic development. We also find important evidence
in the fishes, which stand between the lower and higher vertebrates,
and throw further light on the course of evolution in certain periods.
Next to the fishes come the amphibia, from the embryology of which we
can also draw instructive conclusions. They represent the transition to
the higher vertebrates, in which the middle and older stages of
ancestral development have been either distorted or curtailed, but in
which we find the more recent stages of the phylogenetic process well
preserved in ontogeny. We are thus in a position to form a fairly
complete idea of the past development of man’s ancestors within the
vertebrate stem by putting together and comparing the embryological
developments of the various groups of vertebrates. And when we go below
the lowest vertebrates and compare their embryology with that of their
invertebrate relatives, we can follow the genealogical tree of our
animal ancestors much farther, down to the very lowest groups of
animals.
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