=The stem is cylindrical=, _the outer part being bark and the inner
part being wood or woody tissue_. In the dicotyledonous plants, the
bark is usually easily separated from the remainder of the cylinder
at some time of the year; in monocotyledonous plants the bark is not
free. Growth in thickness takes place inside the covering and not on
the very outside of the plant cylinder. It is evident, then, that
the covering of _bark must expand in order to allow of the expansion
of the woody cylinder within it_. The tissues, therefore, must be
under constant pressure or tension. It has been determined that the
pressure within a growing trunk is often as much as fifty pounds to
the square inch. The lower part of the limb in Fig. 61 shows that the
outer layers of bark (which are long since dead, and serve only as
protective tissue) have reached the limit of their expanding capacity
and have begun to split. The pupil will now be interested in the bark
on the body of an old elm tree (Fig. 62); and he should be able to
suggest one reason why stems remain cylindrical, and why the old bark
becomes marked with furrows, scales, and plates.
[Illustration: FIG. 62.—PIECE OF BARK FROM AN OLD ELM TRUNK.]
Most woody plants increase in diameter by the addition of an _annual
layer_ or “_ring_” on the outside of the woody cylinder, underneath
the bark. The monocotyledonous plants comprise very few trees and
shrubs in temperate climates (the palms, yuccas, and other tree-like
plants are of this class), and they do not increase greatly in
diameter and they rarely branch to any extent.
=Bark-bound Trees.=—If, for any reason, the bark should become so
dense and strong that the trunk cannot expand, the tree is said to be
“bark-bound.” Such condition is not rare in orchard trees that have
been neglected. When good tillage is given to such trees, they may
not be able to overcome the rigidity of the old bark, and, therefore,
do not respond to the treatment. Sometimes the parts with thinner
bark may outgrow in diameter the trunk or the old branches below
them. The remedy is to _release the tension_. This may be done either
by softening the bark (by washes of soap or lye), or by separating
it. The latter is done by slitting the bark-bound part (in spring),
thrusting the point of a knife through the bark to the wood, and
then drawing the blade down the entire length of the bark-bound
part. The slit is scarcely discernible at first, but it opens with
the growth of the tree, filling up with new tissue beneath. Let the
pupil consider the ridges which he now and then finds on trees, and
determine whether they have any significance—whether the tree has
ever been released, or injured by natural agencies.
[Illustration: FIG. 63.—PROPER CUTTING OF A BRANCH. The wound will
soon be “healed.”]
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