Darwin, and After Darwin, Volume 2 of 3: Post-Darwinian Questions: Heredity and UtilityRomanes, George John
Science
Darwin, and After Darwin, Volume 2 of 3: Post-Darwinian Questions: Heredity and Utility
Romanes, George John
Evolution (Biology); Heredity
It appears to me that the only answer to such cases would be furnished
by supposing that the hereditary changes are due to an alteration of the
residual "germ-plasm" in the wild seed, when this is first exposed to
the changed conditions of life, due to its growth in a strange kind of
soil--e.g. while germinating in an unusual kind of earth for producing
the first generation. But this would be going a long way to save an
hypothesis. In case, however, it should now be suggested, I may remark
that it would be negatived by the following facts.[79]
[79] Since the above was written Professor Weismann has advanced, in
_The Germ-plasm_, a suggestion very similar to this. It is
sufficient here to remark, that nearly all the facts and
considerations which ensue in the present chapter are
applicable to his suggestion, the essence of which is
anticipated in the above paragraph.
In the first place, an endless number of cases might be quoted where
somatogenetic changes thus produced by changed conditions of life are
not hereditary. Therefore, in all these cases it is certainly not the
"germ-plasm" that is affected. In other words, there can be no question
that somatogenetic changes of the kinds above mentioned do very readily
admit of being produced in the first generation by changes of soil,
altitude, &c. And that somatogenetic changes thus produced should not
always--or even generally--prove themselves to be hereditary from the
first moment of their occurrence, is no more than any theory of
heredity would expect. Indeed, looking to the known potency of
reversion, the wonder is that in any case such changes should become
hereditary in a single generation. On the other hand, there is no reason
to imagine that the hypothetical germ-plasm--howsoever _unstable_ we may
suppose it to be--can admit of being directly affected by a change of
soil in a single generation. For, on this view, it must presumably be
chiefly affected during the short time that the seed is germinating; and
during that time the changed conditions can scarcely be conceived as
having any points of attack, so to speak, upon the residual germ-plasm.
There are no roots on which the change of _soil_ can make itself
perceptible, nor any stem and leaves on which the change of _atmosphere_
can operate. Yet the changed condition's may produce hereditary
modifications in any parts of the plant, which are not only precisely
analogous to non-hereditary changes similarly produced in the somatic
tissues of innumerable other plants, but are always of precisely the
same kind in the same lot of plants that are affected. When all the
radishes grown from wild seed in Paris, for instance, varied in the
direction of rotundity and dark colour, while those grown in the country
presented the opposite characters, we can well understand the facts as
due to an entire season's action upon the whole of the growing plant,
Public-domain text, read in full here on John Shaqi.
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