On the Origin of Species By Means of Natural Selection: Or, the Preservation of Favoured Races in the Struggle for LifeDarwin, Charles
Science
On the Origin of Species By Means of Natural Selection: Or, the Preservation of Favoured Races in the Struggle for Life
Darwin, Charles
Evolution (Biology); Natural selection
I see no reason to limit the process of modification, as now explained,
to the formation of genera alone. If, in our diagram, we suppose the
amount of change represented by each successive group of diverging
dotted lines to be very great, the forms marked _a_14 to _p_14, those
marked _b_14 and _f_14, and those marked _o_14 to _m_14, will form
three very distinct genera. We shall also have two very distinct genera
descended from (I) and as these latter two genera, both from continued
divergence of character and from inheritance from a different parent,
will differ widely from the three genera descended from (A), the two
little groups of genera will form two distinct families, or even
orders, according to the amount of divergent modification supposed to
be represented in the diagram. And the two new families, or orders,
will have descended from two species of the original genus; and these
two species are supposed to have descended from one species of a still
more ancient and unknown genus.
We have seen that in each country it is the species of the larger
genera which oftenest present varieties or incipient species. This,
indeed, might have been expected; for as natural selection acts through
one form having some advantage over other forms in the struggle for
existence, it will chiefly act on those which already have some
advantage; and the largeness of any group shows that its species have
inherited from a common ancestor some advantage in common. Hence, the
struggle for the production of new and modified descendants, will
mainly lie between the larger groups, which are all trying to increase
in number. One large group will slowly conquer another large group,
reduce its numbers, and thus lessen its chance of further variation and
improvement. Within the same large
group, the later and more highly perfected sub-groups, from branching
out and seizing on many new places in the polity of Nature, will
constantly tend to supplant and destroy the earlier and less improved
sub-groups. Small and broken groups and sub-groups will finally tend to
disappear. Looking to the future, we can predict that the groups of
organic beings which are now large and triumphant, and which are least
broken up, that is, which as yet have suffered least extinction, will
for a long period continue to increase. But which groups will
ultimately prevail, no man can predict; for we well know that many
groups, formerly most extensively developed, have now become extinct.
Looking still more remotely to the future, we may predict that, owing
to the continued and steady increase of the larger groups, a multitude
of smaller groups will become utterly extinct, and leave no modified
descendants; and consequently that of the species living at any one
period, extremely few will transmit descendants to a remote futurity. I
shall have to return to this subject in the chapter on Classification,
but I may add that on this view of extremely few of the more ancient
Public-domain text, read in full here on John Shaqi.
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