Before turning to this important fact, which, by the way, will bring us
to our specially chosen type, the Echinus, a few words may be devoted to
the phenomenon of “parthenogenesis,” that is to say, the possibility
of development without fertilisation, since owing to the brilliant
discoveries of the American physiologist, Jacques Loeb, this topic forms
one of the centres of biological interest at present. It has long been
known that the eggs of certain bees, lice, crayfishes, and other animals
and also plants, are capable of development without fertilisation at
all. Now Richard Hertwig and T. H. Morgan already had shown, that at
least nuclear division may occur in the eggs of other forms--in the egg
of the sea-urchin for instance--when these eggs are exposed to some
chemical injuries. But Loeb[4] succeeded in obtaining a full development
by treating the eggs of echinoderms with chloride of magnesium; thus
artificial parthenogenesis had been discovered. Later researches have
shown that artificial parthenogenesis may occur in all classes of the
animal kingdom and may be provoked by all sorts of chemical or physical
means. We do not know at present in what the proper stimulus consists
that must be supposed here to take the place of fertilisation; it seems,
of course, highly probable that it is always the same in the last
resort.[5]
[4] *Amer. Journ. Physiol.* vols. iii. and iv. 1900.
[5] According to Delage (*Arch. Zool. exp.*, 3 sér. 10, 1902), it is
indifferent for the realisation of artificial parthenogenesis, whether
but one, or both, or neither of the “polar bodies” has been formed. But
the egg must be in the first stages of maturation to the extent that the
“nuclear membrane” must be already dissolved.
But enough about processes, which at present are of a highly scientific,
but hardly of any philosophic interest.
By fertilisation proper we understand the joining of the male element,
the spermatozoon or the spermia, with the female element, the egg. Like
the egg, the spermatozoon is but a cell, though the two differ very much
from one another in the relation between their protoplasm and nucleus:
in all eggs it is the protoplasm which is comparatively very large, if
held together with somatic cells, in the spermatozoon it is the nucleus.
A large amount of reserve material, destined for the growth of the
future being, is the chief cause of the size of the egg-protoplasm. The
egg is quite or almost devoid of the faculty of movement, while on the
contrary, movement is the most typical feature of the spermia. Its whole
organisation is adapted to movement in the most characteristic manner:
indeed, most spermatozoa resemble a swimming infusorium, of the type
of Flagellata, a so-called head and a moving tail are their two chief
constituents; the head is formed almost entirely of nuclear substance.
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