Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
(FIGURE 2.229. Original or primordial ovum-cleavage. The stem-cell or
cytula, formed by fecundation of the ovum, divides by repeated regular
cleavage first into two (A), then four (B), then eight (C), and
finally a large number of segmentation-cells (D).
FIGURE 2.230. Morula, or mulberry-shaped embryo.)
It is clear that this morula reproduces for us to-day the simple
structure of the multicellular animal that succeeded the unicellular
amoeboid form in the early Laurentian period. In accordance with the
biogenetic law, the morula recalls the ancestral form of the Moraea,
or simple colony of Protozoa. The first cell-communities to be formed,
which laid the early foundation of the higher multicellular body, must
have consisted of homogeneous and simple amoeboid cells. The oldest
Amoebae lived isolated lives, and even the amoeboid cells that were
formed by the segmentation of these unicellular organisms must have
continued to live independently for a long time. But gradually small
communities of Amoebae arose by the side of these eremitical Protozoa,
the sister-cells produced by cleavage remaining joined together. The
advantages in the struggle for life which these communities had over
the isolated cells favoured their formation and their further
development. We find plenty of these cell-colonies or communities
to-day in both fresh and salt water. They belong to various groups
both of the Protophyta and Protozoa.
To have some idea of those ancestors of our race that succeeded
phylogenetically to the Moraeada, we have only to follow the further
embryonic development of the morula. We then see that the social cells
of the round cluster secrete a sort of jelly or a watery fluid inside
their globular body, and they themselves rise to the surface of it
(Figure 1.29 F, G). In this way the solid mulberry-embryo becomes a
hollow sphere, the wall of which is composed of a single layer of
cells. We call this layer the blastoderm, and the sphere itself the
blastula, or embryonic vesicle.
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