The Movements and Habits of Climbing PlantsDarwin, Charles
Science
The Movements and Habits of Climbing Plants
Darwin, Charles
Climbing plants; Geotropism; Plants; Plants -- Irritability and movements
On the view here given, it may be asked, Why have the species which were
aboriginally twiners been converted in so many groups into leaf-climbers
or tendril-bearers? Of what advantage has this been to them? Why did
they not remain simple twiners? We can see several reasons. It might be
an advantage to a plant to acquire a thicker stem, with short internodes
bearing many or large leaves; and such stems are ill fitted for twining.
Any one who will look during windy weather at twining plants will see
that they are easily blown from their support; not so with
tendril-bearers or leaf-climbers, for they quickly and firmly grasp their
support by a much more efficient kind of movement. In those plants which
still twine, but at the same time possess tendrils or sensitive petioles,
as some species of Bignonia, Clematis, and Tropæolum, it can readily be
observed how incomparably better they grasp an upright stick than do
simple twiners. Tendrils, from possessing this power of grasping an
object, can be made long and thin; so that little organic matter is
expended in their development, and yet they sweep a wide circle in search
of a support. Tendril-bearers can, from their first growth, ascend along
the outer branches of any neighbouring bush, and they are thus always
fully exposed to the light; twiners, on the contrary, are best fitted to
ascend bare stems, and generally have to start in the shade. Within tall
and dense tropical forests, twining plants would probably succeed better
than most kinds of tendril-bearers; but the majority of twiners, at least
in our temperate regions, from the nature of their revolving movement,
cannot ascend thick trunks, whereas this can be affected by
tendril-bearers if the trunks are branched or bear twigs, and by some
species if the bark is rugged.
The advantage gained by climbing is to reach the light and free air with
as little expenditure of organic matter as possible; now, with twining
plants, the stem is much longer than is absolutely necessary; for
instance, I measured the stem of a kidney-bean, which had ascended
exactly two feet in height, and it was three feet in length: the stem of
a pea, on the other hand, which had ascended to the same height by the
aid of its tendrils, was but little longer than the height reached. That
this saving of the stem is really an advantage to climbing plants, I
infer from the species that still twine but are aided by clasping
petioles or tendrils, generally making more open spires than those made
by simple twiners. Moreover, the plants thus aided, after taking one or
two turns in one direction, generally ascend for a space straight, and
then reverse the direction of their spire. By this means they ascend to
a considerably greater height, with the same length of stem, than would
otherwise have been possible; and they do this with safety, as they
secure themselves at intervals by their clasping petioles or tendrils.
Public-domain text, read in full here on John Shaqi.
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