Life Movements in Plants, Volume IIBose, Jagadis Chandra
Science
Life Movements in Plants, Volume II
Bose, Jagadis Chandra
Growth (Plants); Plants -- Irritability and movements
Under normal conditions, the torsional response under light places the
upper surface of the leaf or leaflets at right angles to light. That
this movement is not due to some specific sensibility to light is shown
by the fact that all modes of stimulation, chemical, thermal or
gravitational, induce similar responsive torsion. The torsional response
is, moreover, shown to be determined by the direction of incident
stimulus, and the differential excitability of the organ. This latter
may be reversed by the local application of various depressing agents on
the normally more excitable lower half of the pulvinus. Under this
treatment, the lower half of the pulvinus may be rendered relatively the
less excitable. Lateral application of light now induces a torsional
movement which is the reverse of the normal, so that the upper surface
of the leaf moves away from light. The advantage of the plant cannot,
therefore, be the factor which determines the directive movement; the
teleological argument often advanced is, in any case, no real
explanation of the phenomenon.
In all the instances given above, and under every mode of stimulation,
the responsive movement makes the less excitable half of the pulvinus
face the stimulus. The torsional response is, in reality, the mechanical
result of the differential contraction of a complex organ, which is
fixed at one end and subjected to lateral stimulation. I have been able
to verify this, by the construction of an artificial pulvinus consisting
of a compound strip, the upper half of which is ebonite, and lower half
the more contractile stretched India-rubber; if such a strip be held
securely at one end in a clamp, and if the lateral flank, consisting
half of ebonite and half of India-rubber, be subjected to radiation, and
record taken in the usual manner, it will be found that a torsional
response takes place which is similar to that of the pulvinus of
_Mimosa_. The above experiment was devised to offer an explanation of
the mechanics of the movement. It should, however, be borne in mind in
this connection that the torsional response of pulvinus is brought about
by differential _physiological_ contraction of the organ, the movement
being abolished at death.
From the results given above, we arrive at the following:--
LAWS OF TORSIONAL RESPONSE.
1. AN ANISOTROPIC ORGAN, WHEN LATERALLY EXCITED BY ANY STIMULUS,
UNDERGOES TORSION BY WHICH THE LESS EXCITABLE SIDE IS MADE TO FACE THE
STIMULUS.
2. THE INTENSITY OF TORSIONAL RESPONSE INCREASES WITH THE DIFFERENTIAL
EXCITABILITY; WHEN THE ORIGINAL DIFFERENCE IS REDUCED, OR REVERSED, THE
TORSIONAL RESPONSE UNDERGOES CONCOMITANT DIMINUTION OR REVERSAL.
Having thus established the laws that guide torsional response, I shall
try to explain certain related phenomena which are regarded as highly
obscure. I shall also describe the application of the method of
torsional response in various investigations.
COMPLEX TORSION UNDER LIGHT.
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