On Molecular and Microscopic Science, Volume 1 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 1 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
When this mass of zoospores connected by green threads is immature and
begins to expand into a hollow sphere, then the central globe is
continually bisected so as to form 4, 8, 16, 32, 64, or a greater number
of equal and similar parts, each of which is ultimately developed into a
zoospore exactly the same with the matured green zoospores on the
surface of the primary sphere, so that the ‘Volvox globator is a
composite fabric made up of a repetition of organisms in all respects
similar to each other,’ which Professor Ehrenberg the first to discover,
though he did not investigate the development of the plant.
It appears that certain spheres of the Volvox are monœcious, that is,
each sphere contains male and female cells, though the greater number of
cells are neutral. The germ or female cells are larger and of a deeper
green than the others; the male cells resemble them, but the endochrome
within them breaks up symmetrically into a multitude of linear particles
aggregated into discoid bundles beset with vibratile cilia, which move
about within their cells and soon become decomposed into their component
corpuscles. Each of these corpuscles has a linear body, thicker at its
posterior end, and furnished with two long cilia. The female cell, when
fertilized, gets a smooth envelope, and then a thicker one, beset with
conical-pointed processes, and the contained chlorophyll gives place, as
in Palmoglœa, to starch and a red or orange coloured oil. It appears
that the Volvox stellatus and V. aureus are only phases of the Volvox
globator.
The Desmidiaceæ are minute green algæ inhabiting fresh-water pools or
slow running streams, never those that are muddy. They are free
unicellular plants, sometimes triangular, sometimes cylindrical,
crescent or bow-shaped, smooth or spined. So varied are their
microscopic forms that a description would be tedious. In plants of such
extreme minuteness, the only means of ascertaining the nature of their
component materials is by chemical tests. A solution of iodine turns
starch blue, and cellulose brown, and thus it is found that the interior
of the Desmidiaceæ is occupied by a mass of starch granules, covered
with chlorophyll, and mixed with a formative fluid. This mass, enclosed
in a delicate membrane, constitutes the primordial cell; it has an
exterior coat of firm cellulose, and the whole is more or less enveloped
in a gelatinous substance. Like other plants, when in bright sunshine,
the Desmidiaceæ decompose carbonic acid gas, give off the oxygen, and
assimilate the carbon into chlorophyll.
[Illustration: Fig. 9. Various species of Staurastrum:—A, vestitum; B,
aculeatum; C, paradoxum; D, E, brachiatum.]
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