Life Movements in Plants, Volume IIBose, Jagadis Chandra
Science
Life Movements in Plants, Volume II
Bose, Jagadis Chandra
Growth (Plants); Plants -- Irritability and movements
The torsional response not only affords a new method of enquiry on the
reaction of various stimuli, but it also possesses certain advantages.
For instance in studying the response of the leaf of _Mimosa_ under
light, the records were taken of the movement of the leaf in a vertical
plane. But the responsive up-movement, induced by light acting from
above, is opposed by the weight of the leaf. But in the torsional
response, the leaf rests on the hooked glass support and the movement is
thus free from the complicating factor of the weight of the leaf. Again
the pulvinus of _Mimosa_, for example, is sometimes subject to
spontaneous variation of turgor, on account of which it exhibits an
autonomous up or down movement. In the ordinary method of record the
true response to external stimulus may thus be modified by natural
movement of the leaf. But in the torsional method, the autonomous up or
down movement is restrained by the hooked support, and the response to
lateral stimulus is unaffected by the spontaneous movement of the leaf.
The torsional method, moreover, opens out possibilities of inquiry in
new directions, such as the comparison of the excitatory effects of
different stimuli by the Method of Balance, and the determination of the
effective direction of geotropic stimulus.
THE TORSIONAL BALANCE.
A beam of light falling on the left flank of the pulvinus of _Mimosa_
induces a torsion against the hands of the clock. A second beam falling
on the right flank opposes the first movement; the resultant effect is
therefore determined by the effective stimulation of the two flanks. The
pulvinus thus becomes a delicate index by which two stimuli may be
compared with each other. The following experiment is cited as an
example of the application of the method of phototropic balance.
_Experiment 155._--Parallel beam of light from a small arc lamp passing
through blue glass falls on the left flank of the pulvinus; a beam of
blue light also strikes the pulvinus from the right side, and the
intensity of the latter is so adjusted that the resultant torsion is
zero. Blue glass is now removed from the left side, the unobstructed
white light being allowed to fall on the left flank of the pulvinus.
This was found to upset the balance, the resultant torsion being
anti-clockwise. This showed that white light induced greater excitation
than blue light. We next interpose a red glass on the left side, with
the result that the balance is upset in the opposite direction. This is
because the phototropic effect of red light is comparatively feeble.
We may thus compare the tropic effect of one form of stimulus against
a totally different form, phototropic against geotropic action
for example. It is enough here to draw attention to the various
investigations rendered possible by the method of balance. Concrete
examples of some of these will be given in a subsequent chapter.
DETERMINATION OF THE DIRECTION OF STIMULUS.
Public-domain text, read in full here on John Shaqi.
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