The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
Maturation of the ovum having been completed, entrance of the spermatozoon,
sometimes through the limiting membrane and sometimes through a micropyle
or opening in it, takes place. This instantly initiates a series of
complicated changes: not many seconds passing before there begins the
formation of an aster around one end of the spermatozoon-head. The growth
of this aster, apparently by linear rangings of the granules composing the
reticulum of the germ-cell, progresses rapidly; while the whole structure
hence arising moves inward. Soon there takes place the fusion of this
sperm-nucleus with the germ-nucleus to form the cleavage-nucleus, which,
after a pause, begins to divide and subdivide in the same manner as cells
at large: so presently forming a cluster of cells out of which arise the
layers originating the embyro. The details of this process do not concern
us. It suffices to indicate thus briefly its general nature.
And now ending thus the account of genesis under its histological aspect,
we pass to the account of genesis under its wider and more significant
aspects.
CHAPTER VII.
GENESIS.
§ 75. Having, in the last chapter but one, concluded what constitutes an
individual, and having, in the last chapter, contemplated the histological
process which initiates a new individual, we are in a position to deal with
the multiplication of individuals. For this, the title Genesis is here
chosen as being the most comprehensive title--the least specialized in its
meaning. By some biologists Generation has been used to signify one method
of multiplication, and Reproduction to signify another method; and each of
these words has been thus rendered in some degree unfit to signify
multiplication in general.
Here the reader is indirectly introduced to the fact that the production of
new organisms is carried on in fundamentally unlike ways. Up to quite
recent times it was believed, even by naturalists, that all the various
processes of multiplication observable in different kinds of organisms,
have one essential character in common: it was supposed that in every
species the successive generations are alike. It has now been proved,
however, that in many plants and in numerous animals, the successive
generations are not alike; that from one generation there proceeds another
whose members differ more or less in structure from their parents; that
these produce others like themselves, or like their parents, or like
neither; but that eventually, the original form re-appears. Instead of
there being, as in the cases most familiar to us, a constant recurrence of
the same form, there is a cyclical recurrence of the same form. These two
distinct processes of multiplication, may be aptly termed _homogenesis_ and
_heterogenesis_.[28] Under these heads let us consider them.
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