Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
How can we explain this curious anomaly? Only as a result of very
characteristic and peculiar cenogenetic modifications of the embryonic
process, the real causes of which must be sought in the change in the
rearing of the young on the part of the viviparous mammals. These are
clearly connected with the fact that the ancestors of the viviparous
mammals were oviparous amniotes like the present monotremes, and only
gradually became viviparous. This can no longer be questioned now that
it has been shown (1884) that the monotremes, the lowest and oldest of
the mammals, still lay eggs, and that these develop like the ova of the
reptiles and birds. Their nearest descendants, the marsupials, formed
the habit of retaining the eggs, and developing them in the
oviduct; the latter was thus converted into a womb (uterus). A
nutritive fluid that was secreted from its wall, and passed through the
wall of the blastula, now served to feed the embryo, and took the place
of the food-yelk. In this way the original food-yelk of the monotremes
gradually atrophied, and at last disappeared so completely that the
partial ovum-segmentation of their descendants, the rest of the
mammals, once more became total. From the _discogastrula_ of the former
was evolved the distinctive _epigastrula_ of the latter.
It is only by this phylogenetic explanation that we can understand the
formation and development of the peculiar, and hitherto totally
misunderstood, blastula of the mammal. The vesicular condition of the
mammal embryo was discovered 200 years ago (1677) by Regner de Graaf.
He found in the uterus of a rabbit four days after impregnation small,
round, loose, transparent vesicles, with a double envelope. However,
Graaf’s discovery passed without recognition. It was not until 1827
that these vesicles were rediscovered by Baer, and then more closely
studied in 1842 by Bischoff in the rabbit (Figs. 106, 107). They are
found in the womb of the rabbit, the dog, and other small mammals, a
few days after copulation. The mature ova of the mammal, when they have
left the ovary, are fertilised either here or in the oviduct
immediately afterwards by the invading sperm-cells.[25] (As to the womb
and oviduct see Chapter XXIX) The cleavage and formation of the
gastrula take place in the oviduct. Either here in the oviduct or after
the mammal gastrula has passed into the uterus it is converted into the
globular vesicle which is shown externally in Fig. 106, and in section
in Fig. 107. The thick, outer, structureless envelope that encloses it
is the original _ ovolemma_ or _zona pellucida,_ modified, and clothed
with a layer of albumin that has been deposited on the outside. From
this stage the envelope is called the external membrane, the _primary
chorion_ or prochorion (_a_). The real wall of the vesicle enclosed by
it consists of a simple layer of ectodermic cells (_b_), which are
flattened by mutual pressure, and generally hexagonal; a light nucleus
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