Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
From the concordant observations of Kowalevsky at Naples and Hatschek
at Messina, it follows, firstly, that the ovum-segmentation and
gastrulation of the Amphioxus are of the simplest character. They take
place in the same way as we find them in many of the lower animals of
different invertebrate stems, which we have already described as
original or primordial; the development of the Ascidia is of the same
type. Sexually mature specimens of the Amphioxus, which are found in
great quantities at Messina from April or May onwards, begin as a rule
to eject their sexual products in the evening; if you catch them about
the middle of a warm night and put them in a glass vessel with
seawater, they immediately eject through the mouth their accumulated
sexual products, in consequence of the disturbance. The males give out
masses of sperm, and the females discharge ova in such quantity that
many of them stick to the fibrils about their mouths. Both kinds of
cells pass first into the mantle-cavity after the opening of the
gonads, proceed through the gill-clefts into the branchial gut, and are
discharged from this through the mouth.
The ova are simply round cells. They are only 1/250 of an inch in
diameter, and thus are only half the size of the mammal ova, and have
no distinctive features. The clear protoplasm of the mature ovum is
made so turbid by the numbers of dark granules of food-yelk or
deutoplasm scattered in it that it is difficult to follow the process
of fecundation and the behaviour of the two nuclei during it (p. 51).
The active elements of the male sperm, the cone-shaped spermatozoa, are
similar to those of most other animals (cf. Fig. 20). Fecundation takes
place when these lively ciliated cells of the sperm approach the ovum,
and seek to penetrate into the yelk-matter or the cellular substance of
the ovum with their head-part—the thicker part of the cell that
encloses the nucleus. Only one spermatozoon can bore its way into the
yelk at one pole of the ovum-axis; its head or nucleus coalesces with
the female nucleus, which remains after the extrusion of the directive
bodies from the germinal vesicle. Thus is formed the “stem-nucleus,” or
the nucleus of the “stem-cell” (cytula, Fig. 2). This now undergoes
total segmentation, dividing into two, four, eight, sixteen, thirty-two
cells, and so on. In this way we get the spherical, mulberry-shaped
body, which we call the _ morula._
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