In the culture of osmotic growths we may also by appropriate means produce
terminal organs resembling flowers and seed-capsules. To do this we wait
till the growth is considerably advanced, and then add a large quantity of
liquid to the nutrient solution so as to diminish the concentration a
hundredfold or more. Spherical {132} terminal organs will then grow out
from the ends of the stems, which may during their further growth become
conical or piriform in shape.
By superposing layers of liquid of different concentration and decreasing
density, one may obtain knots and swellings in the osmotic growths marking
the surfaces of separation of the liquid. When a young growth in the vigour
of its youth reaches the surface of the water, it spreads out horizontally
over the surface of the liquid in thin leaves or foliaceous expansions of
different forms.
[Illustration: FIG. 42.--An osmotic madrepore.]
The preponderating influence in morphogenesis is osmotic pressure, the
osmotic forms varying with its intensity, distribution, and mode of
application. Whatever the chemical composition of the liquid, similar
osmotic forces, modified in the same manner, give rise to forms which have
a family resemblance. The chemical nature of the liquid, however, is not
entirely without influence on the form. Thus the presence of a nitrate in
the mother liquor tends to produce points or thorns. Ammonium chloride in a
potassium ferrocyanide solution produces growths shaped like catkins, and
the alkaline chlorides tend to produce vermiform growths. {133}
Coralline growths may also be obtained by using appropriate chemical
solutions. For this purpose the solution of silicate, carbonate, and
dibasic phosphate should be diluted to half strength, with the addition of
2 to 4 per cent. of a concentrated solution of sodium sulphate or potassium
nitrate.
[Illustration: FIG. 43.--An osmotic mushroom form.]
[Illustration: FIG. 44.--Osmotic fungi.]
Coral-like forms may also be grown from a semi-saturated solution of
silicate, carbonate, and dibasic phosphate, to which has been added 4 per
cent. of a concentrated solution of sodium sulphate or potassium nitrate.
In this we may obtain beautiful growths like madrepores or corals, formed
by a central nucleus from which radiate large leaves like the petals of a
flower. The presence of nitrate of potassium produces pointed leaves with
thorn-like processes recalling the forms of the aloe and the agave.
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