Parthenogenesis, or development of the female gamete without
fertilization, is known to occur in many groups of the animal kingdom.
Attempts have been made to connect this phenomenon with peculiarities
in the gametogeny. For instance, it has been said that parthenogenetic
ova form only one polar body. But, as we have seen, this is sometimes
the case in eggs which are fertilized, and parthenogenetic ova are
known which form two polar bodies, e.g. ova of the honey-bee which
produce drones (_Morph. Jahrb._ xv., 1889, p. 85). ova of Rotifera
which produce males (_Zool. Anzeiger_, xx., 1897, p. 455), ova of some
saw-flies and gall flies which produce females (L. Doncaster, _Quart.
Journ. Mic. Sc._, 49, 1906, pp. 561-589). Again it has been asserted
that in parthenogenetic eggs the polar bodies are not extruded from
the ovum; in such cases, though the nucleus divides, those of its
products which would in other cases be extruded in polar bodies remain
in the protoplasm of the ovum. But this is not a universal rule, for
in some cases of parthenogenesis polar bodies are extruded in the
usual way (_Aphis_, some Lepidoptera), and in some fertilized eggs the
polar bodies are retained in the ovum.
It is quite probable that parthenogenesis is more common than has been
supposed, and it appears that there is some evidence to show that ova,
which in normal conditions are incapable of developing without
fertilization, may yet develop if subjected to an altered
environment. For instance, it has been asserted that the addition of a
certain quantity of chloride of magnesium and other substances to
sea-water will cause the unfertilized ova of certain marine animals
(_Arbacia_, _Chaetopterus_) to develop (J. Loeb, _American Journal of
Physiology_, ix., 1901, p. 423); and according to M.Y. Delage
(_Comptes rendus_, 135, 1902. Nos. 15 and 16) such development may
occur after the formation of polar bodies, the chromosomes undergoing
reduction and the full number being regained in the segmenting stage.
These experiments, if authenticated, suggest that ova have the power
of development, but are not able to exercise it in their normal
surroundings. There is reason to believe that the same assertion may
be made of spermatozoa. Phenomena of the nature of parthenogenesis
have never been observed in the male gamete, but it has been suggested
by A. Giard (_Cinquantenaire de la Soc. de Biol._, 1900) that the
phenomenon of the so-called fertilization of an enucleated ovum which
has been described by T. Boveri and Delage in various eggs, and which
results in development up to the larval form (_merogony_), is in
reality a case in which the male gamete, unable to undergo development
in ordinary circumstances on account of its small size and
specialization of structure has obtained a nutritive environment which
enables it to display its latent power of development. Moreover, A.M.
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