Disease in plantsWard, H. Marshall (Harry Marshall)
Science
Disease in plants
Ward, H. Marshall (Harry Marshall)
Plant diseases
Nevertheless, some information is forthcoming from the comparative
examination of the protoplasm of numerous different kinds of organisms,
for we have learnt that certain ingredients and no others are necessary
for its composition--namely, carbon, hydrogen, oxygen, nitrogen,
phosphorus, sulphur, calcium[Note: See note at end of chapter.],
magnesium, potassium--and it is as a rule of no use trying to foist on
to it any substitute for any one of these. Moreover, these chemical
elements must be given in certain definite proportions and forms: for
instance it is of no use to offer the carbon and sulphur in such a form
as carbon disulphide, or the nitrogen and hydrogen in that of
hydrocyanic acid, but the carbon must be given to the protoplasm in the
form of a carbohydrate or in some similar form, the nitrogen as an
ammonium salt, nitrate or proteid, the sulphur as a sulphate, and so
forth, and thus water, air, carbohydrates, and the nitrates, sulphates,
and phosphates of potassium, calcium, and magnesium become the chief
natural sources of the essential ingredients. Again, we have learnt that
while there are different forms of protoplasm in the cell, and that
these react on each other, and go through cycles of arrangement and
rearrangements, the intimate structure must be of that kind termed
molecular--beyond the region of vision, just as is the microscopic
structure of a crystal; but, while like the latter affording evidence of
order and sequence when properly examined, the structural arrangements
and changes must be infinitely more complex.
All these, and numerous other results of enquiry, have led to the
conclusions that we must regard living protoplasm as a complex made up
of very large molecular units, each containing atom-groupings of the
elements named; and, partly on account of the large number of atoms they
contain, and partly due to the vibrations of absorbed heat, these units
must be extremely labile. Moreover, they are linked up into an
invisible and intricate meshwork, bathed in a watery liquid held in the
interstices somewhat as water is held in a sponge. In this imbibed
liquid are dissolved the substances, consisting of the same elements,
which are to serve as food, and which are to be taken up into the
molecular framework and built up into the structure of new molecular
units--or, as they may be shortly termed, molecules of protoplasm: in
the bathing liquid are also dispersed the fragments--again containing
the elements named--which have resulted from the breaking asunder of
some of the complex protoplasm molecules, and which are partly destined
to be used up again, partly to be burnt off in respiration, and partly
to be put aside as metabolic products such as reserves, secretions,
permanent structure, etc. Among the elements carried into this liquid
and dissolved in it the free oxygen of the air also plays an important
part.
Public-domain text, read in full here on John Shaqi.
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