Life Movements in Plants, Volume IIBose, Jagadis Chandra
Science
Life Movements in Plants, Volume II
Bose, Jagadis Chandra
Growth (Plants); Plants -- Irritability and movements
_Experiment 172._--I shall, as a typical example, give a detailed
account of experiments with the petiole of _Tropæolum_ which was found
so highly excitable to geotropic stimulus (p. 434). The specimen was
held horizontal with two symmetrical contacts at the two sides, the
electrodes being connected in the usual manner with the indicating
galvanometer. When the plant is rotated through +90° there is
an immediate current of response, the upper side becoming
_galvanometrically negative_. This excitatory reaction on the upper side
finds, as we have seen, mechanical expression by contraction and
concavity, with positive or up-curvature.
[Illustration: FIG. 167.--Diagrammatic representation of the
geo-electric response of the shoot (see text).]
The differential stimulation of A and B disappears on rotation of the
axis back to zero position, and the induced electro-motive response also
disappears at the same time. If now the axis be rotated through -90°, A
will become the lower, and B the upper and the excited side. The
electro-motive change is now found to have undergone a reversal, B
becoming galvanometrically negative. This induced electro-motive
variation under geotropic stimulus is of considerable intensity often
exceeding 15 millivolts. The characteristic electric change is shown
diagrammatically in figure 167 in which the middle figure shows the
symmetrical or zero position. On rotation through +90° (figure to the
right) A occupies the upper and B the lower position. A is seen to
exhibit induced change of galvanometric negativity. Rotation through
-90° reverses the current of response, as B now occupies the upper and A
the lower position.
CHARACTERISTICS OF GEO-ELECTRIC RESPONSE.
There are certain phenomena connected with the electric response under
geotropic stimulus which appear to be highly significant. According to
statolithic theory
"Geotropic response begins as soon as an organ is deflected from its
stable position, so that a few starch-grains press upon the ectoplasts
occupying the walls which are underneath in the new position; an actual
rearrangement of the starch-grains is therefore not an essential
condition of stimulation. As a matter of fact, the starch-grains do very
soon migrate on to the physically lower walls, when a positively or
negatively geotropic organ is placed horizontally, with the result that
the intensity of stimulation gradually increases attaining its maximum
value when all the falling starch-grains have moved on to the lower
region of the ectoplast. The time required for the complete
rearrangement of the statoliths may be termed the period of migration;
its average length varies from five to twenty minutes in different
organs."[36]
[36] Haberlandt--_Ibid_--p. 598.
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