Essays Upon Heredity and Kindred Biological Problems: Authorised TranslationWeismann, August
Science
Essays Upon Heredity and Kindred Biological Problems: Authorised Translation
Weismann, August
Evolution (Biology); Genetics; Reproduction
It is clear that such an increase in the germ-plasm must depend, to a
certain extent, upon the nutrition of the nucleus, and thus indirectly
upon the body of the egg-cell; but the increase must chiefly depend
upon internal nuclear conditions, viz. upon the capability of growth.
We must further assume that the latter condition plays the chief part
in the process, for everywhere in the organic world the limit of growth
depends upon the internal conditions of the growing body, and can only
be altered to a small extent by differences of nutrition. The phyletic
acquisition of the capability of parthenogenetic development must
therefore depend upon an alteration in the capability of growth
possessed by the nucleus of the egg.
This theory of parthenogenesis most nearly approaches Strasburger’s
views upon the subject, for he also explains the non-occurrence of
parthenogenetic development by the insufficient quantity of nucleoplasm
remaining in the egg after the expulsion of polar bodies. The former
theory differs however in that the occurrence of parthenogenesis is
supposed to be only due to an increase of this nucleoplasm to the
normal size of the segmentation nucleus. Strasburger assumes that
‘specially favourable conditions of nutrition counteract the deficiency
of nuclear idioplasm,’ while it seems to me that nutrition must be
considered as only of secondary importance. Thus in bees, as above
stated, the same egg may develope parthenogenetically or after
fertilization, the nucleus being subject to the same conditions of
nutrition in both cases. Strasburger[167] considers that
parthenogenesis may be interpreted by one of three possible
explanations. First, he suggests that especially favourable nutrition
may lead to the completion of the nuclear idioplasm. But if this
assumption be made, we must ask why a part of the idioplasm should be
previously expelled, when immediately afterwards the presence of an
equal amount becomes necessary. Such a view can only be explained by
the above-made assumption that the expelled nucleoplasm has a different
constitution from that possessed by the nucleoplasm which is afterwards
formed. It is true that we do not yet certainly know whether a polar
body is expelled in eggs in which parthenogenesis occurs, but we do
know that the egg of the bee passes through the same stages of
maturation whether it is to be fertilized or not. I can hardly accept
Strasburger’s second suggestion, ‘that under some favourable conditions
of nutrition half [or perhaps better, a quarter] of the idioplasm of
the egg-nucleus is sufficient to start the processes of development in
the cyto-idioplasm.’ Finally, his third suggestion, ‘that the
cyto-idioplasm, nourished by its surroundings and thus increased in
quantity, compels the nucleus of the egg to enter upon division,’
presupposes that the cell-body gives the impulse for nuclear division,
a supposition which up to the present time remains at least unproved.
Public-domain text, read in full here on John Shaqi.
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