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
At first sight this hypothesis seems to encounter serious difficulties.
It will be objected that neither the beginning nor the end of embryonic
development can possibly depend upon the quantity of nucleoplasm in the
segmentation nucleus, since the amount may be continually increased by
growth; for it is well known that during embryonic development the
nuclear substance increases with astonishing rapidity. By an
approximate calculation I found[161] that, in the egg of a _Cynips_,
the quantity of nuclear substance present at the time when the
blastoderm was about to be formed, and when there were twenty-six
nuclei, was even then seven times as great as the quantity which had
been contained in the segmentation nucleus. How then can we imagine
that embryonic development would ever be arrested from want of nuclear
substance, and if such deficiency really acted as an arresting force,
how then could development begin at all? We might suppose that when
germ-plasm is present in sufficient quantity to start segmentation, it
must also be sufficient to complete the development; for it grows
continuously, and must presumably always possess a power equal to that
which it possessed at the beginning, and which was just sufficient to
start the process of segmentation. If at each ontogenetic stage, the
quantity of nucleoplasm is just sufficient to produce the following
stage, we might well imagine that the whole ontogeny would necessarily
be completed.
The flaw in this argument lies in the erroneous assumption that the
growth of nuclear substance is, when the quality of the nucleus and the
conditions of nutrition are equal, unlimited and uncontrolled. The
intensity of growth must depend upon the quantity of nuclear substance
with which growth and the phenomena of segmentation commenced. There
must be an optimum quantity of nucleoplasm with which the growth of the
nucleus proceeds most favourably and rapidly, and this optimum will be
represented in the normal size of the segmentation nucleus. Such a size
is just sufficient to produce, in a certain time and under certain
external conditions, the nuclear substance necessary for the
construction of the embryo, and to start the long series of
cell-divisions. When the segmentation nucleus is smaller, but large
enough to enter upon segmentation, the nuclei of the two first
embryonic cells will fall rather more below the normal size, because
the growth of the segmentation nucleus during and after division will
be less rapid on account of its unusually small size. The succeeding
generations of nuclei will depart more and more from the normal size in
each respective stage, because they do not pass into a resting-stage
during embryonic development, but divide again immediately after their
formation. Hence nuclear growth would become less vigorous as the
nuclei fell more and more below the optimum size, and at last a moment
would arrive when they would be unable to divide, or would be at least
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