The bark of certain kinds of trees, as cherry and birch, has peculiar
markings which consist of oblong raised spots or marks, especially
on the young branches. These are called lenticels (Latin _lenticula_,
freckle), and have two purposes: they admit air to the internal
tissues, as it were for breathing, and they also emit water vapor.
These lenticels are to be found on all trees, even where the bark is
very thick, as old oaks and chestnuts, but in these the lenticels are
in the bottoms of the deep cracks. There is a great difference in
the inflammability of bark, some, like that of the big trees of
California, Fig. 54, p. 209, which is often two feet thick, being
practically incombustible, and hence serving to protect the tree;
while some bark, as canoe birch, is laden with an oil which burns
furiously. It therefore makes admirable kindling for camp fires, even
in wet weather.
Inside the cork is the "phloem" or "bast," which, by the way, gives
its name to the bass tree, the inner bark of which is very tough and
fibrous and therefore used for mat and rope making. In a living tree,
the bast fibers serve to conduct the nourishment which has been made
in the leaves down thru the stem to the growing parts.
(2) The _cambium_. Inside of the rind and between it and the wood,
there is, on living trees, a slimy coat called cambium (Med. Latin,
exchange). This is the living, growing part of the stem, familiar to
all who have peeled it as the sticky, slimy coat between the bark
and the wood of a twig. This is what constitutes the fragrant,
mucilaginous inner part of the bark of slippery elm. Cambium is a
tissue of young and growing cells, in which the new cells are formed,
the inner ones forming the wood and the outer ones the bark.
In order to understand the cambium and its function, consider its
appearance in a bud, Fig. 5. A cross-section of the bud of a growing
stem examined under the microscope, looks like a delicate mesh of thin
membrane, filled in with a viscid semi-fluid substance which is called
"protoplasm" (Greek, _protos_, first; _plasma_, form). These meshes
were first called "cells" by Robert Hooke, in 1667, because of their
resemblance to the chambers of a honeycomb. The walls of these
"cells" are their most prominent feature and, when first studied,
were supposed to be the essential part; but later the slimy, colorless
substance which filled the cells was found to be the essential part.
This slimy substance, called protoplasm, constitutes the primal stuff
of all living things. The cell walls themselves are formed from it.
These young cells, at the apex of a stem, are all alike, very small,
filled with protoplasm, and as yet, unaltered. They form embryonic
tissue, _i.e._ one which will change. One change to which an cell
filled with protoplasm is liable is division into two, a new partition
wall forming within it. This is the way plant cells increase.
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