The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
Much more recently have been enunciated the hypotheses of Prof. Weismann,
differing from the foregoing hypotheses in two respects. In the first place
it is assumed that the fragment of matter out of which each organism arises
consists of two portions--one of them, the germ-plasm, reserved within the
generative organ of the incipient individual, representing in its
components the structure of the species, and gives origin to the germs of
future individuals; and the other of them, similarly representative of the
specific structure, giving origin to the rest of the body, or soma, but
contains in its components none of those latent powers possessed by those
of the germ-plasm. In the second place the germ-plasm, in common with the
soma-plasm, consists of multitudinous kinds of units portioned out to
originate the various organs. Of these there are groups, sub-groups, and
sub-sub-groups. The largest of them, called "idants," are supposed each to
contain a number of "ids"; within each id there are numerous
"determinants"; and each determinant is made up of many "biophors"--the
smallest elements possessing vitality. Passing over details, the essential
assumption is that there exists a separate determinant for each part of the
organism capable of independent variation; and Prof. Weismann infers that
while there may be but one for the blood and but one for a considerable
area of skin (as a stripe of the zebra) there must be a determinant for
each scale on a butterfly's wing: the number on the four wings being over
two hundred thousand. And then each cluster of biophors composing a
determinant has to find its way to the place where there is to be formed
the part it represents.
Here it is needless to specify the modifications of these hypotheses
espoused by various biologists--all of them assuming that the structural
traits of each species are expressed in certain units intermediate between
morphological units and chemical units.
§ 97b. A true theory of heredity must be one which recognizes the relevant
phenomena displayed by all classes of organism. We cannot assume two kinds
of heredity, one for plants and another for animals. Hence a theory of
heredity may be first tested by observing whether it is equally applicable
to both kingdoms of living things. Genesis, heredity, and variation, as
seen in plants, are simpler and more accessible than as seen in animals.
Let us then note what these imply.
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