Life Movements in Plants, Volume IBose, Jagadis Chandra
Science
Life Movements in Plants, Volume I
Bose, Jagadis Chandra
Growth (Plants); Plants -- Irritability and movements
_Exclusion of the factor of Excitability._--The object of the enquiry
being the pure effect of variation of conductivity, we have to assure
ourselves that under the particular conditions of the experiment the
complicating factor of polar variation of excitability is eliminated.
It is to be remembered that excitatory transmission in _Mimosa_ takes
place by means of a certain conducting strand of tissue which runs
through the stem and the petiole. In the experiment to be described,
the constant current enters by the tip of the petiole and leaves by
the stem, or _vice versâ_, the length of the intrapolar region being
95 mm. The point of application of stimulus on the petiole is 40 mm.
from the electrode at the tip of the leaf. The responding pulvinus is
also at the same distance from the electrode on the stem. The point of
stimulation and region of response are thus at the relatively great
distance of 40 mm. from either the anode or the cathode, and may
therefore be regarded as situated in the indifferent region. This is
found to be verified in actual experiments.
EFFECTS OF DIRECTION OF CURRENT ON VELOCITY OF TRANSMISSION.
A very convincing method of demonstrating the influence of electric
current on conductivity consists in the determination of changes
induced in the velocity of transmission by the directive action of the
current. For this purpose we have to find out the true time required
by the excitation to travel through a given length of the conducting
tissue (1) in the absence of the current, (2) ‘against’ and (3) ‘with’
the direction of the current. The true time is obtained by subtracting
the latent period of the pulvinus from the observed interval between
the stimulus and response. Now the latent period may not remain
constant, but undergo change under the action of the polarising
current. It has been shown that the excitability of the pulvinus does
not undergo any change when it is situated in the middle or indifferent
region. The following results show that under parallel conditions the
latent period also remains unaffected:--
TABLE V.--SHOWING THE EFFECT OF ELECTRIC CURRENT ON THE LATENT PERIOD.
+------------------------------------------------+-------+-------+
| Specimens | I. | II. |
|------------------------------------------------+-------|-------|
| | sec. | sec. |
| Latent period under normal condition | 0.10 | 0.09 |
| " " current from right to left | 0.11 | 0.10 |
| " " current from left to right | 0.09 | 0.09 |
+------------------------------------------------+-------+-------+
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