Disease in plantsWard, H. Marshall (Harry Marshall)
Science
Disease in plants
Ward, H. Marshall (Harry Marshall)
Plant diseases
Among these organic materials are countless myriads of living beings,
especially fungi and bacteria, which require oxygen and organic
materials for their subsistence, and it depends on the open or close,
moderately moist or damp, warm or cold nature of the soil, and on some
obviously connected factors, how far down these aërobic organisms can
thrive. As we go deeper down they become fewer and fewer, and gradually
disappear, and (neglecting certain anaërobic bacteria of putrefaction)
they are rarely found in marked abundance more than a few inches below
the surface soil.
These aërobic fungi and bacteria are the great agents of continued
fertility of a soil, and it is they which, living and multiplying in the
moist and well-aerated warm interstices of a rich open soil, carry out
the useful destruction of organic matter, breaking it up into mineral
and gaseous bodies, which are then dissolved in the water bathing the
root-hairs or escape into the atmosphere. In this work of destruction
they are aided by the oxygen of the air and the solar heat: their own
fermentative action is also accompanied by a marked rise of temperature,
and the carbon-dioxide and other products of their activity all go to
complicate the chemical changes going on in the soil around the roots.
Duclaux has calculated that _Aspergillus niger_, a common mould fungus,
can break down organic substances, such as carbohydrates, at such a rate
that a metre cube of the fungus would decompose more than 3000 kilogr.
of starch in a year, and this may serve as an example giving some idea
of the possibilities in soil.
Analyses of waters containing large quantities of organic matter, as
they enter such open soils as those referred to, compared with the
drainage water after passing through the upper strata, show that the
carbonaceous and nitrogenous materials are broken down to more or less
completely oxidised simpler compounds, and that the following chief
changes result. The ammonia and some other nitrogenous bodies remain
behind in the soil, as also do the phosphoric acid and much of the
potash; whereas large quantities of nitric and nitrous acids, together
with much sulphuric acid, chlorides, and calcium salts pass away in the
drainage. These facts are obviously highly important in agriculture.
Experiments on sewage farms have shown also that the upper soil retains
most of the bacteria of the sewage. Koch found at Osmont, near Berlin,
that whereas the different sewage waters contained numbers so enormous
that each cubic centimeter probably held 38,000,000 germs, the different
drainage waters held only 87,000 per c.cm.; and the whole process of
water-filtration through sandy soils depends on these well-known facts.
Public-domain text, read in full here on John Shaqi.
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