Disease in plantsWard, H. Marshall (Harry Marshall)
Science
Disease in plants
Ward, H. Marshall (Harry Marshall)
Plant diseases
But there is another aspect of this question of soil-organisms which has
grown in importance of late to such an extent that we are more than ever
justified in regarding the biology of soil as far more vital to the
interests of the plant than its physical or chemical properties. With
many of the fungi in the soil the roots of plants have to compete--just
as plant competes with plant--for water, salts, and other
food-materials. The toadstools which are so conspicuous in fields and
forests spring from mycelia which ramify in the ground, and are busily
breaking down the remains of other organisms, and just such fungi are
known to store up relatively large quantities of salts of potassium and
phosphorus--the very salts which are so valuable to crops and occur so
sparingly in most soils, but which the extensively spread fungus mycelia
can gradually accumulate. Some of these fungi, moreover, are more active
in their antagonism, and actually attack and pierce the roots as
destructive parasites, but I pass these by for the present, as they form
the subject for further consideration when we come to the diseases of
plants.
It is obvious that the competition of fungi with root-hairs for mineral
salts, oxygen, etc., may be at times acute, and it is extremely probable
that cases of so-called sterility of soil, where a particular soil is
found unsuitable for a crop, may sometimes be due to this
over-competition.
The researches of recent years, however, and especially those of Frank,
Winogradsky, Hellriegel, and Stahl, have brought to light a series of
relationships between certain of these soil-organisms and the higher
plants which place the matter of soil-biology in quite new lights.
On the one hand it has been discovered that groups of bacteria are the
active agents in bringing about the destruction of organic nitrogenous
matter with the formation of ammonia, in oxidising this ammonia to
nitrous and to nitric acids, which combine with bases in the soil to
form the corresponding salts; while, on the other hand, other forms can
decompose the nitrates and reduce them to nitrites, or set free ammonia
or even nitrogen from them. Moreover, there are certain species which
can fix the free nitrogen of the atmosphere, and start the cycle of
up-building of this inert element into the complex higher compounds we
term organic. It is impossible to over-estimate the importance of these
processes of nitrification and denitrification going on in the soil
about the root-hairs of the higher plants.
But, in addition to this circulation of nitrogen in the soil, it
turns out that the life-actions of bacteria, and not mere chemical
decompositions, are largely responsible for the circulation of
carbon, of iron, of sulphur and other elements formed from the
decomposition--also by bacterial and fungal agency--of animal and
vegetable remains in the soil.
Public-domain text, read in full here on John Shaqi.
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