Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
This reduction is tolerably easy and confident in the case of the small
ovum of our deep-sea bony fish, but it becomes difficult and uncertain
in the case of the large ova that we find in the majority of the other
fishes and in all the reptiles and birds. In these cases the food-yelk
is, in the first place, comparatively colossal, the formative yelk
being almost invisible beside it; and, in the second place, the
food-yelk contains a quantity of different elements, which are known as
“yelk-granules, yelk-globules, yelk-plates, yelk-flakes,
yelk-vesicles,” and so on. Frequently these definite elements in the
yelk have been described as real cells, and it has been wrongly stated
that a portion of the embryonic body is built up from these cells. This
is by no means the case. In every case, however large it is—and even
when cell-nuclei travel into it during the cleavage of the border—the
nutritive yelk remains a dead accumulation of food, which is taken into
the gut during embryonic development and consumed by the embryo. The
latter develops solely from the living formative yelk of the stem-cell.
This is equally true of the ova of our small bony fishes and of the
colossal ova of the primitive fishes, reptiles, and birds.
The gastrulation of the primitive fishes or selachii (sharks and rays)
has been carefully studied of late years by Ruckert, Rabl, and H.E.
Ziegler in particular, and is very important in the sense that this
group is the oldest among living fishes, and their gastrulation can be
derived directly from that of the cyclostoma by the accumulation of a
large quantity of food-yelk. The oldest sharks (_Cestracion_) still
have the unequal segmentation inherited from the cyclostoma. But while
in this case, as in the case of the amphibia, the small ovum completely
divides into cells in segmentation, this is no longer so in the great
majority of the selachii (or _Elasmobranchii_). In these the
contractility of the active protoplasm no longer suffices to break up
the huge mass of the passive deutoplasm completely into cells; this is
only possible in the upper or dorsal part, but not in the lower or
ventral section. Hence we find in the primitive fishes a blastula with
a small eccentric segmentation-cavity (Fig. 55 _b_), the wall of which
varies greatly in composition. The circular border of the germinal disk
which connects the roof and floor of the segmentation-cavity
corresponds to the border-zone at the equator of the amphibian ovum. In
the middle of its hinder border we have the beginning of the
invagination of the primitive gut
(Fig. 56 _ud_); it extends gradually from this spot (which corresponds
to the Rusconian anus of the amphibia) forward and around, so that the
primitive mouth becomes first crescent-shaped and then circular, and,
as it opens wider, surrounds the ball of the larger food-yelk.
Public-domain text, read in full here on John Shaqi.
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