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
Modern embryology affords us many proofs, in the segmentation of the
ovum, and in the subsequent developmental changes, that the causes of
the different forms of reproductive activity witnessed in cells lie in
the essential nature of the cells themselves. Why does the segmentation
of one half of certain eggs proceed twice as rapidly as that of the
other half? why do the cells of the ectoderm divide so much more
quickly than those of the endoderm? Why does not only the rate, but
also the number of cells produced (so far as we can follow them) always
remain the same? Why does the multiplication of cells in every part of
the blastoderm take place with the exact amount of energy and rapidity
necessary to produce the various elevations, folds, invaginations,
etc., in which the different organs and tissues have their origin, and
from which finally the organism itself arises? There can be no doubt
that the causes of all these phenomena lie within the cells themselves;
that in the ovum and the cells which are immediately derived from it,
there exists a tendency towards a certain determined (I might almost
say specific) mode and energy of cell-multiplication. And why should we
regard this inherited tendency as confined to the building up of the
embryo? why should it not also exist in the young, and later in the
mature animal? The phenomena of heredity which make their appearance
even in old age afford us proofs that a tendency towards a certain mode
of cell-multiplication continues to regulate the growth of the organism
during the whole of its life.
The above-mentioned considerations show us that the degree of
reproductive activity present in the tissues is regulated by internal
causes while the natural death of an organism is the termination—the
hereditary limitation—of the process of cell-division, which began in
the segmentation of the ovum.
Allow me to suggest a further consideration which may be compared with
the former. The organism is not only limited in time, but also in
space: it not only lives for a limited period, but it can only attain a
limited size. Many animals grow to their full size long before their
natural end: and although many fishes, reptiles, and lower animals are
said to grow during the whole of their life, we do not mean by this
that they possess the power of unlimited growth any more than that of
unlimited life. There is everywhere a maximum size, which, as far as
our experience goes, is never surpassed. The mosquito never reaches the
size of an elephant, nor the elephant that of a whale.
Upon what does this depend? Is there any external obstacle to growth?
Or is the limitation entirely imposed from within?
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