Life Movements in Plants, Volume IIBose, Jagadis Chandra
Science
Life Movements in Plants, Volume II
Bose, Jagadis Chandra
Growth (Plants); Plants -- Irritability and movements
I may state here that I have been successful in devising an electric
method for the determination of the latent period, in which the
disturbing effect of the weight of the organ is completely eliminated.
Applying this perfect method, I found that the latent period was in some
cases as short as a second. The experiment will be found fully described
in a later chapter.
THE COMPLETE GEOTROPIC CURVE.
The characteristics of the geotropic curve are similar to those of other
tropic curves. That is to say the susceptibility for excitation is at
first feeble; it then increases at a rapid rate; in the third stage the
rate becomes uniform; and finally the curvature attains a maximum value
and the organ attains a state of geotropic equilibrium (cf. page 353).
The period of completion of the curve varies in different specimens from
a few to many hours.
_Experiment 166._--The following record was obtained with a bud of
_Crinum_, the successive dots being at intervals of 10 minutes. After
overcoming the effect of weight (which took an hour), the curve rose at
first slowly, then rapidly. The period of uniformity of movement is seen
to be attained after three hours and continued for nearly 90 minutes.
The final equilibrium was reached after a period of 8 hours (Fig. 161).
[Illustration: FIG. 161.--The Complete Geotropic curve (_Crinum_).]
For studying the effect of an external agent on geotropic action, the
period of uniform movement is the most suitable. Acceleration of the
normal rate (with enhanced steepness of curve) indicates that the
external agent acts with geotropism in a concordant manner; depression
of the rate with resulting flattening of the curve shows, on the other
hand, the antagonistic effect of the outside agent.
DETERMINATION OF EFFECTIVE DIRECTION OF STIMULUS.
The experiments which have been described show that it is the upper side
(on which the vertical lines of gravity impinge) that undergoes
excitation. The vertical lines of gravity must therefore be the
direction of incident stimulus. This conclusion is supported by results
of three independent lines of inquiry: (1) the algebraical summation of
effect with that of a different stimulus whose direction is known, (2)
the relation between the directive angle and geotropic reaction, and (3)
the torsional response under geotropic stimulus.
EFFECT OF ALGEBRAICAL SUMMATION.
_Experiment 167._--A flower bud of _Crinum_ is laid horizontally, and
record taken of its geotropic movement. On application of light on the
upper side at L, the responsive movement is enhanced, proving that
gravity and light are inducing similar effects. On the cessation of
light, the original rate of geotropic movement is restored (Fig. 163).
Application of light of increasing intensity from below induces, on the
other hand, a diminution, neutralisation, or reversal of geotropic
movement.
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