The Chemistry of Plant LifeThatcher, Roscoe Wilfred
Science
The Chemistry of Plant Life
Thatcher, Roscoe Wilfred
Botanical chemistry
It is with the latter type of food materials that this chapter is to deal;
while the following and all subsequent chapters deal with the organic
compounds which are synthetized by plants and contain potential energy and
are, therefore, capable of use as synergic food by either the plants
themselves or by animals. It will be understood, therefore, that in this
chapter the word "food" is used to mean the anergic food materials which
are taken into and used by green plants as the raw materials for the
synthesis of organic compounds, with the aid of solar energy, or that of
previously produced synergic foods. In all later chapters, the term "food"
will be used to mean the organic compounds which serve as the synergic food
for the green parts of green plants and as the sole supply of nutrient
material for the colorless parts of green plants and for parasitic or
saprophytic forms (see page 16).
PLANT FOOD ELEMENTS
The raw materials from which the food and tissue-building compounds of
plants are synthetized include carbon dioxide, oxygen, water, nitrogen,
phosphorus, sulfur, potassium, calcium, magnesium, and iron. The two gases
first mentioned are derived directly from the air, through the respiratory
organs of the plant. Water is taken into the plant chiefly from the soil,
through its fibrous roots. All the other elements in the list are taken
from the soil, nitrogen being derived from decaying organic matter (the
original source of the nitrogen is, however, the atmosphere, from which the
initial supply of nitrogen is obtained by direct assimilation by certain
bacteria and perhaps other low forms of plant life), and the remaining ones
from the mineral compounds of the soil.
Carbon dioxide and oxygen, being derived from the air, are always available
to the leaves and stems of growing plants in unlimited supply; but the
supply available to a seed when germinating in the soil, or to the roots of
a growing farm crop, may sometimes become inadequate, especially in soils
of a very compact texture, or "water-logged" soils. In such cases, the
deficiency of these gaseous food elements may become a limiting factor in
plant growth.
Water is often a limiting factor in plant growth. Experiments which have
been repeated many times and under widely varying conditions show that when
water is supplied to a plant in varying amounts, by increasing the
percentage of water in the soil in which the plant is growing by regular
increments up to the saturation point, the growth of the plant, or yield of
the crop, increases up to a certain point and then falls off because the
excess of water reduces the supply of air which is available to the plant
roots. Hence, abundance of water is, in general, a most essential factor in
plant growth.
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