The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
accumulation of organic matter, but simply its re-composition and
re-arrangement. Certain animal-embryos, again, during their early stages,
increase considerably in size without assimilating any solids from the
environment; and they do this by absorbing the surrounding water. Even in
the highest organisms, as in children, there appears sometimes to occur a
rapid gain in dimensions which does not truly measure the added quantity of
organic matter; but is in part due to changes analogous to those just
named. Alterations of this kind must not be confounded with that growth,
properly so called, of which we have here to treat.
The next general fact to be noted respecting organic growth, is, that it
has limits. Here there appears to be a distinction between organic and
inorganic growth; but this distinction is by no means definite. Though that
aggregation of inanimate matter which simple attraction produces, may go on
without end; yet there appears to be an end to that more definite kind of
aggregation which results from polar attraction. Different elements and
compounds habitually form crystals more or less unlike in their sizes; and
each seems to have a size that is not usually exceeded without a tendency
arising to form new crystals rather than to increase the old. On looking
at the organic kingdom as a whole, we see that the limits between which
growth ranges are very wide apart. At the one extreme we have monads so
minute as to be rendered but imperfectly visible by microscopes of the
highest power; and at the other extreme we have trees of 400 to 500 feet
high and animals of 100 feet long. It is true that though in one sense this
contrast may be legitimately drawn, yet in another sense it may not; since
these largest organisms arise by the combination of units which are
individually like the smallest. A single plant of the genus _Protococcus_,
is of the same essential structure as one of the many cells united to form
the thallus of some higher Alga, or the leaf of a phænogam. Each separate
shoot of a phænogam is usually the bearer of many leaves. And a tree is an
assemblage of numerous united shoots. One of these great teleophytes is
thus an aggregate of aggregates of aggregates of units, which severally
resemble protophytes in their sizes and structures; and a like building up
is traceable throughout a considerable part of the animal kingdom. Even,
however, when we bear in mind this qualification, and make our comparisons
between organisms of the same degree of composition, we still find the
limit of growth to have a great range. The smallest branched flowering
plant is extremely insignificant by the side of a forest tree; and there is
an enormous difference in bulk between the least and the greatest mammal.
But on comparing members of the same species, we discover the limit of
growth to be much less variable. Among the _Protozoa_ and _Protophyta_,
each kind has a tolerably constant adult size; and among the most complex
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