The Movements and Habits of Climbing Plants — John Shaqi
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 we take hold of a growing sapling, we can of course bend it to all
sides in succession, so as to make the tip describe a circle, like that
performed by the summit of a spontaneously revolving plant. By this
movement the sapling is not in the least twisted round its own axis. I
mention this because if a black point be painted on the bark, on the side
which is uppermost when the sapling is bent towards the holder’s body, as
the circle is described, the black point gradually turns round and sinks
to the lower side, and comes up again when the circle is completed; and
this gives the false appearance of twisting, which, in the case of
spontaneously revolving plants, deceived me for a time. The appearance
is the more deceitful because the axes of nearly all twining-plants are
really twisted; and they are twisted in the same direction with the
spontaneous revolving movement. To give an instance, the internode of
the Hop of which the history has been recorded, was at first, as could be
seen by the ridges on its surface, not in the least twisted; but when,
after the 37th revolution, it had grown 9 inches long, and its revolving
movement had ceased, it had become twisted three times round its own
axis, in the line of the course of the sun; on the other hand, the common
Convolvulus, which revolves in an opposite course to the Hop, becomes
twisted in an opposite direction.
Hence it is not surprising that Hugo von Mohl (p. 105, 108, &c.) thought
that the twisting of the axis caused the revolving movement; but it is
not possible that the twisting of the axis of the Hop three times should
have caused thirty-seven revolutions. Moreover, the revolving movement
commenced in the young internode before any twisting of its axis could be
detected. The internodes of a young Siphomeris and Lecontea revolved
during several days, but became twisted only once round their own axes.
The best evidence, however, that the twisting does not cause the
revolving movement is afforded by many leaf-climbing and tendril-bearing
plants (as _Pisum sativum_, _Echinocystis lobata_, _Bignonia capreolata_,
_Eccremocarpus scaber_, and with the leaf-climbers, _Solanum jasminoides_
and various species of _Clematis_), of which the internodes are not
twisted, but which, as we shall hereafter see, regularly perform
revolving movements like those of true twining-plants. Moreover,
according to Palm (pp. 30, 95) and Mohl (p. 149), and Léon, {8}
internodes may occasionally, and even not very rarely, be found which are
twisted in an opposite direction to the other internodes on the same
plant, and to the course of their revolutions; and this, according to
Léon (p. 356), is the case with all the internodes of a certain variety
of _Phaseolus multiflorus_. Internodes which have become twisted round
their own axes, if they have not ceased to revolve, are still capable of
twining round a support, as I have several times observed.
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