Disease in plantsWard, H. Marshall (Harry Marshall)
Science
Disease in plants
Ward, H. Marshall (Harry Marshall)
Plant diseases
Again, what may be termed excretion-energy, as expressed in the
separation of a solid body--_e.g._ a crystal--from a solution, may be
for our purposes regarded separately. Any change in the condition of
aggregation of a substance in the plant may result in movements and the
overcoming of resistances.
It will be evident from this short digression--and this is the point I
wish to emphasise--that in the interval between the securing of a grain
of starch, representing so much energy won from the external universe,
and the reconversion of this grain into its equivalent carbon-dioxide
and water, by respiration, resulting in the loss of the above energy as
heat, the starch referred to may have undergone numerous transformations
in the living machinery of the plant, and have played at various times a
rôle in connection with the most various evolutions of energy.
If we try to picture a possible case, we may take the following. A given
starch-granule, after being built up in the chlorophyll-corpuscle, is
decomposed, and yields part of itself as glucose, which passes down into
other parts of the plant in solution. Part of it is merely re-converted
into starch, and temporarily stored: another part passes into the arena
of oxydation-processes, the sum of which constitute respiration, and may
serve for a time in the molecules of an organic acid: yet another part
may be converted into a constituent of the cellulose cell-walls; while
part may be brought into play in the reconstruction of protoplasm.
In this last connection a discovery made by Schulze about 1878, and
followed up later by Pfeffer, Palladin, and others is of importance.
Seedlings growing in the dark, or in an atmosphere devoid of
carbon-dioxide in the light, become surcharged with nitrogenous bodies
known as amides, formed during the breaking down of the proteids in the
destructive process preceding and accompanying respiration: if the
seedlings are allowed free access to light and carbon-dioxide, however,
the amides disappear. The explanation is that they are combined with
some of the materials of the carbohydrates, and again built up into the
material of the living protoplasm.
Returning to our hypothetical starch-grain--or, rather, its parts--we
have some of it retained as starch, in excess, simply because it is not
needed at the moment: another portion gives up its energy in
respiration, and this does work on the spot, or is lost as heat; or in
the body of an organic acid, or its salt, the part in question may do
lifting or pressing work by osmosis, or cause diffusion-currents from
one cell to another. In the constitution of the cell-wall we may have
part of our starch-grain aiding in imbibition or in the establishment of
elastic tensions in turgidity: and, finally, parts may be built up into
the living protoplasmic machinery of the plant.
Public-domain text, read in full here on John Shaqi.
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