Common objects of the microscopeWood, J. G. (John George)
Science
Common objects of the microscope
Wood, J. G. (John George)
Microscopes; Microscopy
Fig. 9 on the same Plate exhibits two notable peculiarities--the
irregularity of the cells and the copiously pitted deposit with which
they are covered. The irregularity of the cells is mostly produced by
the way in which the multiplication takes place, namely, by division
of the original cell into two or more new ones, so that each of these
takes the shape which it assumed when a component part of the parent
cell. In this case the cells are necessarily very irregular, and when
they are compressed from all sides they form solid figures of many
sides, which, when cut through, present a flat surface marked with a
variety of irregular outlines. This specimen is taken from the rind of
a gourd.
The “pitted” structure which is so well shown in this figure is caused
by a layer of matter which is deposited in the cell and thickens its
walls, and which is perforated with a number of very minute holes
called “pits.” This substance is called “secondary deposit.” That these
pits do not extend through the real cell-wall has already been shown
in Fig. 12.
This secondary deposit assumes various forms. In some cases it is
deposited in rings round the cell, and is clearly placed there for
the purpose of strengthening the general structure. Such an example
may be found in the mistletoe (Fig. 5), where the secondary deposit
has formed itself into clear and bold rings that evidently give
considerable strength to the delicate walls which they support. Fig. 10
shows another good instance of similar structure; differing from the
preceding specimen in being much longer and containing a greater number
of rings. This object is taken from an anther of the narcissus. Among
the many plants from which similar objects may be obtained, the yew is
perhaps one of the most prolific, as ringed wood-cells are abundant
in its formation, and probably aid greatly in giving to the wood the
strength and elasticity which have long made it so valuable in the
manufacture of bows.
Before taking leave of the cells and their remarkable forms, we will
just notice one example which has been drawn in Fig. 6. This is a
congeries of cells, containing their nuclei, starting originally end to
end, but swelling and dividing at the top. This is a very young group
of cells (a young hair, in fact) from the inner part of a lilac bud,
and is here introduced for the purpose of showing the great similarity
of all vegetable cells in their earliest stages of existence.
Having now examined the principal forms of cells, we arrive at the
“vessels,” a term which is applied to those long and delicate tubes
which are formed of a number of cells set end to end, their walls of
separation being absorbed.
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