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
When an unattached tendril contracts spirally, the spire always runs in
the same direction from tip to base. A tendril, on the other hand, which
has caught a support by its extremity, although the same side is concave
from end to end, invariably becomes twisted in one part in one direction,
and in another part in the opposite direction; the oppositely turned
spires being separated by a short straight portion. This curious and
symmetrical structure has been noticed by several botanists, but has not
been sufficiently explained. {165} It occurs without exception with all
tendrils which after catching an object contract spirally, but is of
course most conspicuous in the longer tendrils. It never occurs with
uncaught tendrils; and when this appears to have occurred, it will be
found that the tendril had originally seized some object and had
afterwards been torn free. Commonly, all the spires at one end of an
attached tendril run in one direction, and all those at the other end in
the opposite direction, with a single short straight portion in the
middle; but I have seen a tendril with the spires alternately turning
five times in opposite directions, with straight pieces between them; and
M. Léon has seen seven or eight such alternations. Whether the spires
turn once or more than once in opposite directions, there are as many
turns in the one direction as in the other. For instance, I gathered ten
attached tendrils of the Bryony, the longest with 33, and the shortest
with only 8 spiral turns; and the number of turns in the one direction
was in every case the same (within one) as in the opposite direction.
[Picture: Fig. 13. A caught tendril of Bryonia dioica, spirally
contracted in reserved directions]
The explanation of this curious little fact is not difficult. I will not
attempt any geometrical reasoning, but will give only a practical
illustration. In doing this, I shall first have to allude to a point
which was almost passed over when treating of Twining-plants. If we hold
in our left hand a bundle of parallel strings, we can with our right hand
turn these round and round, thus imitating the revolving movement of a
twining plant, and the strings do not become twisted. But if we hold at
the same time a stick in our left hand, in such a position that the
strings become spirally turned round it, they will inevitably become
twisted. Hence a straight coloured line, painted along the internodes of
a twining plant before it has wound round a support, becomes twisted or
spiral after it has wound round. I painted a red line on the straight
internodes of a _Humulus_, _Mikania_, _Ceropegia_, _Convolvulus_, and
_Phaseolus_, and saw it become twisted as the plant wound round a stick.
It is possible that the stems of some plants by spontaneously turning on
their own axes, at the proper rate and in the proper direction, might
avoid becoming twisted; but I have seen no such case.
Public-domain text, read in full here on John Shaqi.
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