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
Here, again, we recognize the fact that Nägeli’s whole hypothesis is
intimately connected with the supposition that the entire mass of
idioplasm is continuous throughout the organism. Sometimes one part of
the idioplasm and sometimes another part is irritated, and then
produces the corresponding organ. But if, on the other hand, the
idioplasm does not represent a directly continuous mass, but is
composed of thousands of single nucleoplasms which only act together
through the medium of their cell-bodies, then we must substitute the
conception of ‘ontogenetic stages of development of the idioplasm’ for
the conception of germs of structure (‘Anlagen’). The different
varieties of nucleoplasm which arise during ontogeny represent, as it
were, the germs of Nägeli (‘Anlagen’), because, by means of their
molecular structure, they create a specific constitution in the
cell-bodies over which they have control, and also because they
determine the succession of future nuclei and cells.
It is in this sense, and no other, that I can speak of the presence of
preformed germs (‘Anlagen’) in the idioplasm. We may suppose that the
idioplasm of the first segmentation nucleus is but slightly different
from that of the second ontogenetic stage, viz. that of the two
following segmentation nuclei. Perhaps only a few groups of micellae
have been displaced or somewhat differently arranged. But nevertheless
such groups of micellae were not the germs (‘Anlagen’) of a second
stage which pre-existed in the first stage, for the two are
distinguished by the possession of a different molecular structure.
This structure in the second stage, under normal conditions of
development, again brings about the change by which the different
molecular structure of the third stage is produced, and so on.
It may be argued that von Baer’s well-known and fundamental law of
development is opposed to the hypothesis that the idioplasm of
successive ontogenetic stages must gradually assume a simpler molecular
structure. The organization of the species has, on the whole, increased
immensely in complexity during the course of phylogeny: and if the
phyletic stages are repeated in the ontogeny, it seems to follow that
the structure of the idioplasm must become more complex in the course
of ontogeny instead of becoming simpler. But the complexity of the
whole organism is not represented in the molecular structure of the
idioplasm of any single nucleus, but by that of all the nuclei present
at any one time. It is true that the germ-cell, or rather the idioplasm
of the germ-nucleus, must gain greater complexity as the organism which
arises from it becomes more complex; but the individual nucleoplasms of
each ontogenetic stage may become simpler, while the whole mass of
idioplasms in the organism (which, taken together, represent the stage
in question) does not by any means lose in complexity.
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