The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
§ 43. Perhaps the widest and most familiar induction of Biology, is that
organisms grow. While, however, this is a characteristic so uniformly and
markedly displayed by plants and animals, as to be carelessly thought
peculiar to them, it is really not so. Under appropriate conditions,
increase of size takes place in inorganic aggregates, as well as in organic
aggregates. Crystals grow; and often far more rapidly than living bodies.
Where the requisite materials are supplied in the requisite forms, growth
may be witnessed in non-crystalline masses: instance the fungous-like
accumulation of carbon that takes place on the wick of an unsnuffed candle.
On an immensely larger scale, we have growth in geologic formations: the
slow accumulation of deposited sediment into a stratum, is not
distinguishable from growth in its widest acceptation. And if we go back to
the genesis of celestial bodies, assuming them to have arisen by Evolution,
these, too, must have gradually passed into their concrete shapes through
processes of growth. Growth is, indeed, as being an integration of matter,
the primary trait of Evolution; and if Evolution of one kind or other is
universal, growth is universal--universal, that is, in the sense that all
aggregates display it in some way at some period.
The essential community of nature between organic growth and inorganic
growth, is, however, most clearly seen on observing that they both result
in the same way. The segregation of different kinds of detritus from each
other, as well as from the water carrying them, and their aggregation into
distinct strata, is but an instance of a universal tendency towards the
union of like units and the parting of unlike units (_First Principles_,
§ 163). The deposit of a crystal from a solution is a differentiation of
the previously mixed molecules; and an integration of one class of
molecules into a solid body, and the other class into a liquid solvent. Is
not the growth of an organism an essentially similar process? Around a
plant there exist certain elements like the elements which form its
substance; and its increase of size is effected by continually integrating
these surrounding like elements with itself. Nor does the animal
fundamentally differ in this respect from the plant or the crystal. Its
food is a portion of the environing matter that contains some compound
atoms like some of the compound atoms constituting its tissues; and either
through simple imbibition or through digestion, the animal eventually
integrates with itself, units like those of which it is built up, and
leaves behind the unlike units. To prevent misconception, it may be well to
point out that growth, as here defined, must be distinguished from certain
apparent and real augmentations of bulk which simulate it. Thus, the long,
white potato-shoots thrown out in the dark, are produced at the expense of
the substances which the tuber contains: they illustrate not the
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account