Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
By far the most important process that determines the various
cenogenetic forms of gastrulation is the change in the nutrition of the
ovum and the accumulation in it of nutritive yelk. By this we
understand various chemical substances (chiefly granules of albumin and
fat-particles) which serve exclusively as reserve-matter or food for
the embryo. As the metazoic embryo in its earlier stages of development
is not yet able to obtain its food and so build up the frame, the
necessary material has to be stored up in the ovum. Hence we
distinguish in the ova two chief elements—the active formative yelk
(protoplasm) and the passive food-yelk (deutoplasm, wrongly spoken of
as “the yelk”). In the little palingenetic ova, the segmentation of
which we have already considered, the yelk-granules are so small and so
regularly distributed in the protoplasm of the ovum that the even and
repeated cleavage is not affected by them. But in the great majority of
the animal ova the food-yelk is more or less considerable, and is
stored in a certain part of the ovum, so that even in the unfertilised
ovum the “granary” can clearly be distinguished from the formative
plasm. As a rule, the formative-yelk (with the germinal vesicle) then
usually gathers at one pole and the food-yelk at the other. The first
is the _ animal,_ and the second the _vegetal,_ pole of the vertical
axis of the ovum.
Fig.39 Gastrula of the amphioxus, seen from left side. Fig. 39—Gastrula
of the amphioxus, seen from left side (diagrammatic median section).
(From _Hatschek._) _g_ primitive gut, _u_ primitive mouth, _p_
peristomal pole-cells, _i_ entoderm, _e_ ectoderm, _d_ dorsal side, _v_
ventral side.
In these “telolecithal” ova, or ova with the yelk at one end (for
instance, in the cyclostoma and amphibia), the gastrulation then
usually takes place in such a way that in the cleavage of the
impregnated ovum the animal (usually the upper) half splits up more
quickly than the vegetal (lower). The contractions of the active
protoplasm, which effect this continual cleavage of the cells, meet a
greater resistance in the lower vegetal half from the passive
deutoplasm than in the upper animal half. Hence we find in the latter
more but smaller, and in the former fewer but larger, cells. The animal
cells produce the external, and the vegetal cells the internal,
germinal layer.
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