Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
The older embryologists (Pander, Baer, Remak), and, in recent times
especially, His, Kolliker, and others, said that the two primary
germinal layers of the hen's ovum--the oldest and most frequent
subject of observation!--arose by horizontal cleavage of a simple
germinal disk. In opposition to this accepted view, I affirmed in my
Gastraea Theory (1873) that the discoid bird-gastrula, like that of
all other vertebrates, is formed by folding (or invagination), and
that this typical process is merely altered in a peculiar way and
disguised by the immense accumulation of food-yelk and the flat
spreading of the discoid blastula at one part of its surface. I
endeavoured to establish this view by the derivation of the
vertebrates from one source, and especially by proving that the birds
descend from the reptiles, and these from the amphibia. If this is
correct, the discoid gastrula of the amniotes must have been formed by
the folding-in of a hollow blastula, as has been shown by Remak and
Rusconi of the discoid gastrula of the amphibia, their direct
ancestors. The accurate and extremely careful observations of the
authors I have mentioned (Goette, Rauber, and Duval) have decisively
proved this recently for the birds; and the same has been done for the
reptiles by the fine studies of Kupffer, Beneke, Wenkebach, and
others. In the shield-shaped germinal disk of the lizard (Figure
1.62), the crocodile, the tortoise, and other reptiles, we find in the
middle of the hind border (at the same spot as the sickle groove in
the bird) a transverse furrow (u), which leads into a flat,
pouch-like, blind sac, the primitive gut. The fore (dorsal) and hind
(ventral) lips of the transverse furrow correspond exactly to the lips
of the primitive mouth (or sickle-groove) in the birds.
(FIGURE 1.62. Germinal disk of the lizard (Lacerta agilis). (From
Kupffer.) u primitive mouth, s sickle, es embryonic shield, hf and df
light and dark germinative area.)
The gastrulation of the mammals must be derived from this special
embryonic development of the reptiles and birds. This latest and most
advanced class of the vertebrates has, as we shall see afterwards,
evolved at a comparatively recent date from an older group of
reptiles; and all these amniotes must have come originally from a
common stem-form. Hence the distinctive embryonic process of the
mammal must have arisen by cenogenetic modifications from the older
form of gastrulation of the reptiles and birds. Until we admit this
thesis we cannot understand the formation of the germinal layers in
the mammal, and therefore in man.
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