Darwin and Modern ScienceSeward, A. C. (Albert Charles)
Philosophy
Darwin and Modern Science
Seward, A. C. (Albert Charles)
Darwin, Charles, 1809-1882; Evolution (Biology); Science -- History
In every being of complex structure thousands of primary constituents
must go to make up a single id; these I call DETERMINANTS, and I mean
by this name very small individual particles, far below the limits of
microscopic visibility, vital units which feed, grow, and multiply
by division. These determinants control the parts of the developing
embryo,--in what manner need not here concern us. The determinants
differ among themselves, those of a muscle are differently constituted
from those of a nerve-cell or a glandular cell, etc., and every
determinant is in its turn made up of minute vital units, which I
call BIOPHORS, or the bearers of life. According to my view, these
determinants not only assimilate, like every other living unit, but they
VARY in the course of their growth, as every living unit does; they may
vary qualitatively if the elements of which they are composed vary, they
may grow and divide more or less rapidly, and their variations give rise
to CORRESPONDING variations of the organ, cell, or cell-group which they
determine. That they are undergoing ceaseless fluctuations in regard to
size and quality seems to me the inevitable consequence of their unequal
nutrition; for although the germ-cell as a whole usually receives
sufficient nutriment, minute fluctuations in the amount carried to
different parts within the germ-plasm cannot fail to occur.
Now, if a determinant, for instance of a sensory cell, receives for a
considerable time more abundant nutriment than before, it will grow more
rapidly--become bigger, and divide more quickly, and, later, when the
id concerned develops into an embryo, this sensory cell will become
stronger than in the parents, possibly even twice as strong. This is an
instance of a HEREDITARY INDIVIDUAL VARIATION, arising from the germ.
The nutritive stream which, according to our hypothesis, favours the
determinant N by chance, that is, for reasons unknown to us, may remain
strong for a considerable time, or may decrease again; but even in
the latter case it is conceivable that the ascending movement of the
determinant may continue, because the strengthened determinant now
ACTIVELY nourishes itself more abundantly,--that is to say, it attracts
the nutriment to itself, and to a certain extent withdraws it from its
fellow-determinants. In this way, it may--as it seems to me--get into
PERMANENT UPWARD MOVEMENT, AND ATTAIN A DEGREE OF STRENGTH FROM WHICH
THERE IS NO FALLING BACK. Then positive or negative selection sets in,
favouring the variations which are advantageous, setting aside those
which are disadvantageous.
Public-domain text, read in full here on John Shaqi.
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