On the Origin of Species By Means of Natural Selection: Or, the Preservation of Favoured Races in the Struggle for Life — John Shaqi
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
Sterility has been said to be the bane of horticulture; but on this
view we owe variability to the same cause which produces sterility; and
variability is the source of all the choicest productions of the
garden. I may add, that as some organisms will breed most freely under
the most unnatural conditions (for instance, the rabbit and ferret kept
in hutches), showing that their reproductive system has not been thus
affected; so will some animals and plants withstand domestication or
cultivation, and vary very slightly—perhaps hardly more than in a state
of nature.
A long list could easily be given of “sporting plants;” by this term
gardeners mean a single bud or offset, which suddenly assumes a new and
sometimes very different character from that of the rest of the plant.
Such buds can be propagated by grafting, etc., and sometimes by seed.
These “sports” are extremely rare under nature, but far from rare under
cultivation; and in this case we see that the treatment of the parent
has affected a bud or offset, and not the ovules or pollen. But it is
the opinion of most physiologists that there is no essential difference
between a bud and an ovule in their earliest stages of formation; so
that, in fact, “sports” support my view, that variability may be
largely attributed to the ovules or pollen, or to both, having been
affected by the treatment of the parent prior to the act of conception.
These cases anyhow show that variation is not necessarily connected, as
some authors have supposed, with the act of generation.
Seedlings from the same fruit, and the young of the same litter,
sometimes differ considerably from each other, though both the young
and the parents, as Müller has remarked, have apparently been exposed
to exactly the same conditions of life; and this shows how unimportant
the direct effects of the conditions of life are in comparison with the
laws of reproduction, and of growth, and of inheritance; for had the
action of the conditions been direct, if any of the young had varied,
all would probably have varied in the same manner. To judge how much,
in the case of any variation, we should attribute to the direct action
of heat, moisture, light, food, etc., is most difficult: my impression
is, that with animals such agencies have produced very little direct
effect, though apparently more in the case of plants. Under this point
of view, Mr. Buckman’s recent experiments on plants seem extremely
valuable. When all or nearly all the individuals exposed to certain
conditions are affected in the same way, the change at first appears to
be directly due to such conditions; but in some cases it can be shown
that quite opposite conditions produce
similar changes of structure. Nevertheless some slight amount of change
may, I think, be attributed to the direct action of the conditions of
life—as, in some cases, increased size from amount of food, colour from
particular kinds of food and from light, and perhaps the thickness of
fur from climate.
Public-domain text, read in full here on John Shaqi.
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