Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
point of the subsequent embryonic processes.
Hertwig has shown that the tiny transparent ova of the echinoderms are
the most convenient for following the details of this important process
of impregnation. We can, in this case, easily and successfully
accomplish artificial impregnation, and follow the formation of the
stem-cell step by step within the space of ten minutes. If we put ripe
ova of the star-fish or sea-urchin in a watch glass with sea-water and
add a drop of ripe sperm-fluid, we find each ovum impregnated within
five minutes. Thousands of the fine, mobile ciliated cells, which we
have described as “sperm-threads” (Fig. 20), make their way to the ova,
owing to a sort of chemical sensitive action which may be called
“smell.” But only one of these innumerable spermatozoa is
chosen—namely, the one that first reaches the ovum by the serpentine
motions of its tail, and touches the ovum with its head. At the spot
where the point of its head touches the surface of the ovum the
protoplasm of the latter is raised in the form of a small wart, the
“impregnation rise” (Fig. 25 _A_). The spermatozoon then bores its way
into this with its head, the tail outside wriggling about all the time
(Fig. 25 _B, C_). Presently the tail also disappears within the ovum.
At the same time the ovum secretes a thin external yelk-membrane (Fig.
25 _ C_), starting from the point of impregnation; and this prevents
any more spermatozoa from entering.
Fig.24 An impregnated echinoderm ovum. Fig. 24—An impregnated
echinoderm ovum, with small homogeneous nucleus (_e k_). (From
_Hertwig._)
Inside the impregnated ovum we now see a rapid series of most important
changes. The pear-shaped head of the sperm-cell, or the “head of the
spermatozoon,” grows larger and rounder, and is converted into the male
pro-nucleus (Fig. 26 _s k_). This has an attractive influence on the
fine granules or particles which are distributed in the protoplasm of
the ovum; they arrange themselves in lines in the figure of a star. But
the attraction or the “affinity” between the two nuclei is even
stronger. They move towards each other inside the yelk with increasing
speed, the male (Fig. 27 _s k_) going more quickly than the female
nucleus (_e k_). The tiny male nucleus takes with it the radiating
mantle which spreads like a star about it. At last the two sexual
nuclei touch (usually in the centre of the globular ovum), lie close
together, are flattened at the points of contact, and coalesce into a
common mass. The small central particle of
nuclein which is formed from this combination of the nuclei is the
stem-nucleus, or the first segmentation nucleus; the new-formed cell,
the product of the impregnation, is our stem-cell, or “first
segmentation sphere” (Fig. 2).
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