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
certain degree of differentiation, which may be rigidly limited to one
single direction, or may take place in one of many directions. All
these cells are widely different from the egg-cell from which they
originated: they are all separated from it by many generations of
cells, and this fact implies that their idioplasms possess a widely
different structure from the idioplasm, or germ-plasm, of the egg-cell.
Even the nuclei of the two first segmentation spheres cannot possess
the same idioplasm as that of the first segmentation nucleus, and it
is, of course, far less possible for such an idioplasm to be present in
the nucleus of any of the later cells of the embryo. The structure of
the idioplasm must necessarily become more and more different from that
of the first segmentation nucleus, as the development of the embryo
proceeds. The idioplasm of the first segmentation nucleus, and of this
nucleus alone, is germ-plasm, and possesses a structure such that an
entire organism can be produced from it. Many writers appear to
consider it a matter of course that any embryonic cell can reproduce
the entire organism, if placed under suitable conditions. But, when we
carefully look into the subject, we see that such powers are not even
possessed by those cells of the embryo which are nearest to the
egg-cell—viz. the first two segmentation spheres. We have only to
remember the numerous cases in which one of them forms the ectoderm of
the animal while the other produces the endoderm, in order to admit the
validity of this objection.
But if the first segmentation spheres are not able to develope into a
complete organism, how can this be the case with one of the later
embryonic cells, or one of the cells of the fully developed animal
body? It is true that we speak of certain cells as being ‘of embryonic
character,’ and only recently Kölliker[125] has given a list of such
cells, among which he includes osteoblasts, cartilage cells, lymph
corpuscles, and connective tissue corpuscles: but even if these cells
really deserve such a designation, no explanation of the formation of
germ-cells is afforded, for the idioplasm of the latter must be widely
different from that of the former.
It is an error to suppose that we gain any further insight into the
formation of germ-cells by referring to these cells of so-called
‘embryonic character,’ which are contained in the body of the mature
organism. It is of course well known that many cells are characterized
by very sharply defined histological differentiation, while others are
but slightly differentiated; but it is as difficult to imagine that
germ-cells can arise from the latter as from the former. Both classes
of cells contain idioplasm with a structure different from that which
is contained in the germ-cell, and we have no right to assume that any
of them can form germ-cells until it is proved that somatic idioplasm
is capable of undergoing re-transformation into germ-idioplasm.
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