=37. Osmose experiments with leaves.=—We may next take the leaves
of certain plants like the geranium, coleus or other plant, and place
them in shallow vessels containing water, salt, and sugar solutions
respectively. The leaves should be immersed, but the petioles should
project out of the water or solutions. Seedlings of corn or beans,
especially the latter, may also be placed in these solutions, so that
the leafy ends are immersed. After one or two hours an examination
shows that the specimens in the water are still turgid. But if we lift
a leaf or a bean plant from the salt or sugar solution, we find that
it is flaccid and limp. The blade, or lamina, of the leaf droops as if
wilted, though it is still wet. The bean seedling also is flaccid, the
succulent stem bending nearly double as the lower part of the stem is
held upright. This loss of turgidity is brought about by the loss of
water from the tissues, and judging from the experiments on spirogyra
and the beet, we conclude that the loss of turgidity is caused by the
withdrawal of some of the water from the cell-sap by the strong salt
solution.
=38.= Now if we wash carefully these leaves and seedlings, which
have been in the salt and sugar solutions, with water, and then immerse
them in fresh water for a few hours, they will regain their turgidity.
Here again we are led to infer that the diffusion current is now inward
through the protoplasmic membranes of all the living cells of the leaf,
and that the resulting turgidity of the individual cells causes the
turgidity of the leaf or stem.
[Illustration: Fig. 26. Seedling of radish, showing root hairs.]
=39. Absorption by root hairs.=—If we examine seedlings, which
have been grown in a germinator or in the folds of paper or cloths so
that the roots will be free from particles of soil, we see near the
growing point of the roots that the surface is covered with numerous
slender, delicate, thread-like bodies, the root hairs. Let us place a
portion of a small root containing some of these root hairs in water on
a glass slip, and prepare it for examination with the microscope. We
see that each thread, or root hair, is a continuous tube, or in other
words it is a single cell which has become very much elongated. The
protoplasmic membrane lines the wall, and strands of protoplasm extend
across at irregular intervals, the interspaces being occupied by the
cell-sap.
[Illustration: Fig. 27. Root hair of corn before and after treatment
with 5% salt solution.]
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