The leaves of many plants, and especially those of some shrubs and
trees, have the capacity of adapting themselves either to intense or to
diffuse light. On the circumference of the crown of a tree the light is
stronger and the leaves a small and thick, with a dense tissue. In the
inner parts of the crown the light is weak and the leaves are broader in
order to get as much of it as possible. They become larger but thinner,
consisting often of a small number of cell layers. The definitive
formation is made in extreme youth, often even during the previous
summer, at the time of the [456] very first evolution of the young
organs within the buds. _Iris_, and _Lactuca Scariola_ or the prickly
lettuce, and many other plants afford similar instances. As the
definitive decision must be made in these cases long before the direct
influence of the conditions which would make the change useful is felt,
it is hardly conceivable how they could be ascribed to this cause.
It is universally known that many plants show deviating features when
very young, and that these often remind us of the characters of their
probable ancestors. Many plants that must have been derived from their
nearest systematic relatives, chiefly by reductions, are constantly
betraying this relation by a repetition of the ancestral marks during
their youth.
There can be hardly a doubt that the general law of natural selection
prevails in such cases as it does in others. Or stated otherwise, it is
very probable, that in most cases the atavistic characters have been
retained during youth because of their temporary usefulness.
Unfortunately, our knowledge of utility of qualities is as yet, very
incomplete. Here we must assume that what is ordinarily spared by
natural selection is to be considered as useful, [457] until direct
experimental investigations have been made.
So it is for instance with the submerged leaves of water-plants. As a
rule they are linear, or if compound, are reduced to densely branching
filiform threads. Hence we may conclude that this structure is of some
use to them. Now two European and some corresponding American species of
water-parsnip, the _Sium latifolium_ and _Berula angustifolia_ with
their allies, are umbellifers, which bear pinnate instead of bi- or
tri-pinnate leaves. But the young plants and even the young shoots when
developing from the rootstocks under water comply with the above rule,
producing very compound, finely and pectinately dissected leaves. From a
systematic point of view these leaves indicate the origin of the
water-parsnips from ordinary umbellifers, which generally have bi- and
tripinnate leaves.
Similar cases of double adaptation, dependent on external conditions at
different periods of the evolution of the plant are very numerous. They
are most marked among leguminous plants, as shown by the trifoliolate
leaves of the thorn-broom and allies, which in the adult state have
green twigs destitute of leaves.
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