Life Movements in Plants, Volume IBose, Jagadis Chandra
Science
Life Movements in Plants, Volume I
Bose, Jagadis Chandra
Growth (Plants); Plants -- Irritability and movements
_Experiment 47._--Stimulus of electric shock applied at a point on the
long petiole of _Averrhoa_ causes successive fall of pairs of leaflets.
In the experiment to be described one of the leaflets of the plant
was attached to the recorder. Stimulus was applied at a distance of
50 mm. The successive dots in the record are at intervals of a second.
It will be noticed that two distinct impulses--a _positive_ and a
_negative_--were generated by the action of Indirect Stimulus. The
positive impulse reached the responding organ after 1.5 second and
caused an erectile movement. The velocity of the positive impulse in
the present case is 33 mm. per second. The normal excitatory negative
impulse reached the motile organ 44 seconds after the application of
stimulus, and caused a very rapid fall of the leaflet, the fall being
far more pronounced than the positive movement of erection (Fig. 52).
In this and in all subsequent records, the positive and negative
responses offer a great contrast. The movement in response to positive
reaction is slow, whereas that due to negative reaction is very abrupt,
almost ‘explosive,’ the successive dots being now very wide apart. As
regards the velocity of impulse the relation is reversed, the positive
being the quicker of the two. In the present case, the velocity of the
excitatory _negative_ impulse is 1.1 mm. per second, as against 33 mm.
of the _positive_ impulse.
The negative impulse is due to the comparatively slow propagation of
the excitatory protoplasmic change, which brings about a diminution
of turgor in the pulvinus and fall of the responding leaflet. The
erectile movement of the leaflet by the positive impulse must be due
to an increase of turgor, brought on evidently, by the forcing in of
water. This presupposes a forcing out of water somewhere else, probably
at the point of application of stimulus. It may be supposed that an
active contraction occurred in plant cells under direct stimulus, in
consequence of which water was forced out giving rise to a hydraulic
wave. On this supposition the positive impulse is to be regarded as
hydro-mechanical. I have, however, not yet been able to devise a
direct experimental test to settle the question.
EFFECT OF DISTANCE OF APPLICATION OF STIMULUS.
In the last experiment the stimulus was applied at the moderate
distance of 50 mm. Let us now consider the respective effects, first,
of an increase, and second, of a decrease of the intervening distance.
In a tissue whose conducting power is not great, the excitatory
impulse is weakened, even to extinction in transmission through a long
distance. Thus the negative impulse may fail to reach the responding
organ, when the stimulus is feeble or the intervening distance long or
semi-conducting. Hence, under the above conditions, stimulus applied at
a distance will give rise only to a positive response.
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