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
If the short, nearly straight portion of an attached tendril of
_Passiflora gracilis_, (and, as I believe, of other tendrils,) between
the opposed spires, be examined, it will be found to be transversely
wrinkled in a conspicuous manner on the outside; and this would naturally
follow if the outer side had grown more than the inner side, this part
being at the same time forcibly prevented from becoming curved. So again
the whole outer surface of a spirally wound tendril becomes wrinkled if
it be pulled straight. Nevertheless, as the contraction travels from the
extremity of a tendril, after it has been stimulated by contact with a
support, down to the base, I cannot avoid doubting, from reasons
presently to be given, whether the whole effect ought to be attributed to
growth. An unattached tendril rolls itself up into a flat helix, as in
the case of Cardiospermum, if the contraction commences at the extremity
and is quite regular; but if the continued growth of the outer surface is
a little lateral, or if the process begins near the base, the terminal
portion cannot be rolled up within the basal portion, and the tendril
then forms a more or less open spire. A similar result follows if the
extremity has caught some object, and is thus held fast.
The tendrils of many kinds of plants, if they catch nothing, contract
after an interval of several days or weeks into a spire; but in these
cases the movement takes place after the tendril has lost its revolving
power and hangs down; it has also then partly or wholly lost its
sensibility; so that this movement can be of no use. The spiral
contraction of unattached tendrils is a much slower process than that of
attached ones. Young tendrils which have caught a support and are
spirally contracted, may constantly be seen on the same stem with the
much older unattached and uncontracted tendrils. In the _Echinocystis_ I
have seen a tendril with the two lateral branches encircling twigs and
contracted into beautiful spires, whilst the main branch which had caught
nothing remained for many days straight. In this plant I once observed a
main branch after it had caught a stick become spirally flexuous in 7
hrs., and spirally contracted in 18 hrs. Generally the tendrils of the
_Echinocystis_ begin to contract in from 12 hrs. to 24 hrs. after
catching some object; whilst unattached tendrils do not begin to contract
until two or three or even more days after all revolving movement has
ceased. A full-grown tendril of _Passiflora quadrangularis_ which had
caught a stick began in 8 hrs. to contract, and in 24 hrs. formed several
spires; a younger tendril, only two-thirds grown, showed the first trace
of contraction in two days after clasping a stick, and in two more days
formed several spires. It appears, therefore, that the contraction does
not begin until the tendril is grown to nearly its full length. Another
young tendril of about the same age and length as the last did not catch
Public-domain text, read in full here on John Shaqi.
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