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
I do not think that Strasburger’s objections can be maintained. I base
this opinion on my previous criticism upon the assumed equality of the
two daughter-nuclei formed by indirect division. I do not see any
reason why the two halves must always possess the same structure,
although they may be of equal size and weight. I am surprised that
Strasburger should admit the possibility that the germ-plasm, which, as
I think, is mixed with the idioplasm of the somatic cells, may remain
unchanged in its passage through the body; for if this writer be
correct in maintaining that the changes of nuclear substance in
ontogeny are effected by the nutritive influence of the cell-body
(cytoplasm), it follows that the whole nuclear substance of a cell must
be changed at every division, and that no unchanged part can remain. We
can only imagine that one part of a nucleus may undergo change while
the other part remains unchanged, if we hold that the necessary
transformations of nuclear substance are effected, by purely internal
causes, viz. that they follow from the constitution of the nucleoplasm.
But that one part may remain unchanged, and that such persistence does,
as a matter of fact, occur is shown by the cases above described, in
which the germ-cells separate very early from the developing egg-cell.
Thus in the egg of Diptera, the two nuclei which are first separated by
division from the segmentation nucleus, form the sexual cells, and this
proves that they receive the germ-plasm of the segmentation nucleus
unchanged. But during or before the separation of these two nuclei, the
remaining part of the segmentation nucleus must have become changed in
nature, or else it would continue to form ‘pole-cells’ at a later
period instead of forming somatic cells. Although in many cases the
cell-bodies of such early embryonic cells fail to exhibit any visible
differences, the idioplasm of their nuclei must undoubtedly differ, or
else they could not develope in different directions. It seems to me
not only possible, but in every way probable, that the bodies of such
early embryonic cells are equal in reality as well as in appearance;
for, although the idioplasm of the nucleus determines the character of
the cell-body, and although every differentiation of the latter depends
upon a certain structure of its nucleoplasm, it does not necessarily
follow that the converse proposition is true, viz. that each change in
the structure of the nucleoplasm must effect a change in the cell-body.
Just as rain is impossible without clouds, but every cloud does not
necessarily produce rain, so growth is impossible without chemical
change, but chemical processes of every kind and degree need not
produce growth. In the same manner every kind of change in the
molecular structure of the nucleoplasm need not exercise a transforming
influence on the cytoplasm, and we can easily imagine that a long
series of changes in the nucleoplasm may appear only in the kind and
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