The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
§ 74g. Here we come unawares to the remaining topic embraced under the
title Cell-Life and Cell-Multiplication. We pass naturally from asexual
multiplication of cells to sexual multiplication--from cell-reproduction to
cell-generation. The phenomena are so numerous and so varied that a large
part of them must be passed over. Conjugation among the _Protophyta_ and
_Protozoa_, beginning with cases in which there is a mingling of the
contents of two cells in no visible respect different from one another, and
developing into a great variety of processes in which they differ, must be
left aside, and attention limited to the terminal process of fertilization
as displayed in higher types of organisms.
Before fertilization there occurs in the ovum an incidental process of a
strange kind--"strange" because it is a collateral change taking no part in
subsequent changes. I refer to the production and extrusion of the "polar
bodies." It is recognized that the formation of each is analogous to
cell-formation in general; though process and product are both dwarfed.
Apart from any ascribed meaning, the fact itself is clear. There is an
abortive cell-formation. Abortiveness is seen firstly in the diminutive
size of the separated body or cell, and secondly in the deficient number of
its chromosomes: a corresponding deficiency being displayed in the group of
chromosomes remaining in the egg--remaining, that is (on the hypothesis
here to be suggested), in the sister-cell, supposing the polar body to be
an aborted cell. It is currently assumed that the end to be achieved by
thus extruding part of the chromosomes, is to reduce the remainder to half
the number characterizing the species; so that when, to this group in the
germ-cell, the sperm-cell brings a similarly-reduced group, union of the
two shall bring the chromosomes to the normal number. I venture to suggest
another interpretation. In doing this, however, I must forestall a
conclusion contained in the next chapter; namely, the conclusion that
gamogenesis begins when agamogenesis is being arrested by unfavourable
conditions, and that the failing agamogenesis initiates the gamogenesis. Of
numerous illustrations to be presently given I will, to make clear the
conception, name only one--the formation of fructifying organs in plants at
times when, and in places where, shoots are falling off in vigour and
leaves in size. Here the successive foliar organs, decreasingly fitted
alike in quality and dimensions for carrying on their normal lives, show us
an approaching cessation of asexual multiplication, ending in the aborted
individuals we call stamens; and the fact that sudden increase of nutrition
while gamogenesis is being thus initiated, causes resumption of
agamogenesis, shows that the gamogenesis is consequent upon the failing
agamogenesis. See then the parallel. On going back from multicellular
organisms to unicellular organisms (or those homologues of them which form
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