Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
There is a substantial agreement throughout the animal world in the
first changes which follow the impregnation of the ovum and the
formation of the stem-cell; they begin in all cases with the
segmentation of the ovum and the formation of the germinal layers. The
only exception is found in the protozoa, the very lowest and simplest
forms of animal life; these remain unicellular throughout life. To this
group belong the amœbae, gregarinæ, rhizopods, infusoria, etc. As their
whole organism consists of a single cell, they can never form germinal
layers, or definite strata of cells. But all the other animals—all the
tissue-forming animals, or _metazoa,_ as we call them, in
contradistinction to the protozoa—construct real germinal layers by the
repeated cleavage of the impregnated ovum. This we find in the lower
cnidaria and worms, as well as in the more highly-developed molluscs,
echinoderms, articulates, and vertebrates.
In all these metazoa, or multicellular animals, the chief embryonic
processes are substantially alike, although they often seem to a
superficial observer to differ considerably. The stem-cell that
proceeds from the impregnated ovum always passes by repeated cleavage
into a number of simple cells. These cells are all direct descendants
of the stem-cell, and are, for reasons we shall see presently, called
segmentation-cells. The repeated cleavage of the stem-cell, which gives
rise to these segmentation-spheres, has long been known as
“segmentation.” Sooner or later the segmentation-cells join together to
form a round (at first, globular) embryonic sphere (_blastula_); they
then form into two very different groups, and arrange themselves
in two separate strata—the two _primary germinal layers._ These enclose
a digestive cavity, the primitive gut, with an opening, the primitive
mouth. We give the name of the _gastrula_ to the important embryonic
form that has these primitive organs, and the name of _gastrulation_ to
the formation of it. This ontogenetic process has a very great
significance, and is the real starting-point of the construction of the
multicellular animal body.
The fundamental embryonic processes of the cleavage of the ovum and the
formation of the germinal layers have been very thoroughly studied in
the last thirty years, and their real significance has been
appreciated. They present a striking variety in the different groups,
and it was no light task to prove their essential identity in the whole
animal world. But since I formulated the gastræa theory in 1872, and
afterwards (1875) reduced all the various forms of segmentation and
gastrulation to one fundamental type, their identity may be said to
have been established. We have thus mastered the law of unity which
governs the first embryonic processes in all the animals.
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