The Origin of Species by Means of Natural Selection: Or, the Preservation of Favoured Races in the Struggle for Life, 6th EditionDarwin, Charles
History
The Origin of Species by Means of Natural Selection: Or, the Preservation of Favoured Races in the Struggle for Life, 6th Edition
Darwin, Charles
Evolution (Biology); Natural selection
to a near approach to identity throughout their whole organisation. If
this had occurred, we should meet with the same form, independently of
genetic connection, recurring in widely separated geological
formations; and the balance of evidence is opposed to any such an
admission.
Mr. Watson has also objected that the continued action of natural
selection, together with divergence of character, would tend to make an
indefinite number of specific forms. As far as mere inorganic
conditions are concerned, it seems probable that a sufficient number of
species would soon become adapted to all considerable diversities of
heat, moisture, &c.; but I fully admit that the mutual relations of
organic beings are more important; and as the number of species in any
country goes on increasing, the organic conditions of life must become
more and more complex. Consequently there seems at first no limit to
the amount of profitable diversification of structure, and therefore no
limit to the number of species which might be produced. We do not know
that even the most prolific area is fully stocked with specific forms:
at the Cape of Good Hope and in Australia, which support such an
astonishing number of species, many European plants have become
naturalised. But geology shows us, that from an early part of the
tertiary period the number of species of shells, and that from the
middle part of this same period, the number of mammals has not greatly
or at all increased. What then checks an indefinite increase in the
number of species? The amount of life (I do not mean the number of
specific forms) supported on an area must have a limit, depending so
largely as it does on physical conditions; therefore, if an area be
inhabited by very many species, each or nearly each species will be
represented by few individuals; and such species will be liable to
extermination from accidental fluctuations in the nature of the seasons
or in the number of their enemies. The process of extermination in such
cases would be rapid, whereas the production of new species must always
be slow. Imagine the extreme case of as many species as individuals in
England, and the first severe winter or very dry summer would
exterminate thousands on thousands of species. Rare species, and each
species will become rare if the number of species in any country
becomes indefinitely increased, will, on the principal often explained,
present within a given period few favourable variations; consequently,
the process of giving birth to new specific forms would thus be
retarded. When any species becomes very rare, close interbreeding will
help to exterminate it; authors have thought that this comes into play
in accounting for the deterioration of the aurochs in Lithuania, of red
deer in Scotland and of bears in Norway, &c. Lastly, and this I am
inclined to think is the most important element, a dominant species,
which has already beaten many competitors in its own home, will tend to
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