The Popular Science Monthly, October, 1900: Vol. 57, May, 1900 to October, 1900 — John Shaqi
The Popular Science Monthly, October, 1900: Vol. 57, May, 1900 to October, 1900Various
History
The Popular Science Monthly, October, 1900: Vol. 57, May, 1900 to October, 1900
Various
Science -- Periodicals; Technology -- Periodicals
One can scarcely regard the presence of so remarkable an appearance
as the achromatic figure without associating with it an important
function in the economy of the cell. As from the centrosome at the pole
of the spindle both sets of radiations diverge, it is not unlikely
that it acts as a center or sphere of energy and attraction. By
some observers the radiations are regarded as substantive fibrillar
structures, elastic or even contractile in their properties. Others,
again, look upon them as morphological expressions of chemical and
dynamical energy in the protoplasm of the cell body. On either theory
we may assume that they indicate an influence, emanating, it may be,
from the centrosome and capable of being exercised both on the cell
plasm and on the nucleus contained in it. On the contractile theory,
the radiations which form the body of the spindle, either by actual
traction of the supposed fibrillæ or by their pressure on the nucleus
which they surround, might impel during karyokinesis the dividing
chromosome elements toward the poles of the spindle, to form there the
daughter nuclei. On the dynamical theory, the chemical and physical
energy in the centrosome might influence the cell plasm and the nucleus
and attract the chromosome elements of the nucleus to the poles of the
spindle. The radiated appearance would therefore be consequent and
attendant on the physico-chemical activity of the centrosome. One or
other of these theories may also be applied to the interpretation of
the significance of the polar radiations.
CELL PLASM.
In the cells of plants, in addition to the cell wall, the cell body
and the cell juice require to be examined. The material of the cell
body, or the cell contents, was named by von Mohl (1846) protoplasm,
and consisted of a colorless tenacious substance which partly lined the
cell wall (primordial utricle) and partly traversed the interior of
the cell as delicate threads inclosing spaces (vacuoles) in which the
cell juice was contained. In the protoplasm the nucleus was embedded.
Nägeli, about the same time, had also recognized the difference between
the protoplasm and the other contents of vegetable cells, and had
noticed its nitrogenous composition.
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