A piece of _cornstalk_, either green or dead, should be in the hand of
each pupil while studying this lesson. Fig. 69 will also be of use.
Is there a swelling at the nodes? Which part of the internode comes
nearest to being perfectly round? There is a grooved channel running
along one side of the internode: how is it placed with reference to the
leaf? with reference to the groove in the internode below it? What do
you find in each groove at its lower end? (In a dried stalk only traces
of this are usually seen.) Does any bud on a cornstalk besides the one
at the top ever develop? Where do suckers come from? Where does the ear
grow?
Cut a cross-section of the stalk between the nodes (Fig. 69). Does it
have a distinct bark? The interior consists of soft “pith” and tough
woody parts. The wood is found in _strands_ or _fibers_. Which is more
abundant? Do the fibers have any definite arrangement? Which strands
are largest? Smallest? The firm smooth _rind_ (which cannot properly be
called a bark) consists of small wood strands packed closely together.
Grass stems are hollow cylinders; and the cornstalk, because of the
lightness of its contents, is also practically a cylinder. Stems of
this kind are admirably adapted for providing a strong support to
leaves and fruit. This is in accordance with the well-known law that
a hollow cylinder is much stronger than a solid cylinder of the same
weight of material. Cut a thin slice of the inner soft part and hold
it up to the light. Can you make out a number of tiny compartments or
cells? These cells consist of a tissue called _parenchyma_, the tissue
from which when young all the other tissues arise and differentiate
(Parenchyma = _parent_ + _chyma_, or tissue). The numerous walls of
these cells may serve to brace the outer wall of the cylinder; but
their chief function in the young stalk is to give origin to other
cells. When alive they are filled with cell sap and protoplasm.
[Illustration: FIG. 70.--DIAGRAM TO SHOW THE COURSE OF FIBRO-VASCULAR
BUNDLES IN MONOCOTYLEDONS.]
Trace the _woody strands_ through the nodes. Do they ascend vertically?
Do they curve toward the rind at certain places? Compare their course
with the strands shown in Fig. 70. _The woody strands consist chiefly
of tough fibrous cells that give rigidity and strength to the plant,
and of long tubular interrupted canals that serve to convey sap upward
from the root and to convey food downward from the leaves to the stem
and roots._
Monocotyledons, as shown by fossils, existed before dicotyledons
appeared, and it is thought that the latter were developed from
ancestors of the former. It will be interesting to trace the
relationship in stem structure. It will first be necessary to learn
something of the structure of the wood strand.
[Illustration: FIG. 71.--DIAGRAM OF WOOD STRANDS OR FIBRO-VASCULAR
BUNDLES IN A ROOT, showing the wood (_x_) and bast (_p_) separated.]
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