Response in the Living and Non-LivingBose, Jagadis Chandra
Science
Response in the Living and Non-Living
Bose, Jagadis Chandra
Electrophysiology; Fatigue; Irritability
It may be mentioned here that the explanation suggested by Kunkel, of
the response being due to movement of water in the plant, is inadequate.
For in that case we should expect a definite stimulation to be under all
conditions followed by a definite electric response, whose intensity and
sign should remain invariable. But we find, instead, the response to be
profoundly modified by any influence which affects the vitality of the
plant. For instance, the response is at its maximum at an optimum
temperature, a rise of a few degrees producing a profound depression;
the response disappears at the maximum and minimum temperatures, and is
revived when brought back to the optimum. Anaesthetics and poisons
abolish the response. Again, we have the response undergoing an actual
reversal when the tissue is stale. All these facts show that mere
movement of water could not be the effective cause of plant response.
CHAPTER IX
PLANT RESPONSE--EFFECT OF ANAESTHETICS AND POISONS
Effect of anaesthetics, a test of vital character of response--Effect of
chloroform--Effect of chloral--Effect of formalin--Method in which
response is unaffected by variation of resistance--Advantage of
block method--Effect of dose.
The most important test by which vital phenomena are distinguished is
the influence on response of narcotics and poisons. For example, a nerve
when narcotised by chloroform exhibits a diminishing response as the
action of the anaesthetic proceeds. (See below, fig. 43.) Similarly,
various poisons have the effect of permanently abolishing all response.
Thus a nerve is killed by strong alkalis and strong acids. I have
already shown how plants which previously gave strong response did not,
after application of an anaesthetic or poison, give any response at all.
In these cases it was the last stage only that could be observed. But it
appeared important to be able to trace the growing effect of
anaesthetisation or poisoning throughout the process. There were,
however, two conditions which it at first appeared difficult to meet.
First it was necessary to find a specimen which would normally exhibit
no fatigue, and give rise for a long time to a uniform series of
response. The immediate changes made in the response, in consequence of
the application of chemical reagents, could then be demonstrated in a
striking manner. And with a little trouble, specimens can be secured in
which perfect regularity of response is found. The record given in
fig. 16, obtained with a specimen of radish, shows how possible it is to
secure plants in which response is absolutely regular. I subjected this
to uniform stimulation at intervals of one minute, during half an hour,
without detecting the least variation in the responses. But it is of
course easier to find others in which the responses as a whole may be
taken as regular, though there may be slight rhythmic fluctuations. And
even in these cases the effect of reagents is too marked and sudden to
escape notice.
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