Common objects of the microscopeWood, J. G. (John George)
Science
Common objects of the microscope
Wood, J. G. (John George)
Microscopes; Microscopy
Fig. 6 is a very pretty desmid called the Pediastrum, and valuable to
the microscopist as exhibiting a curious mode of reproduction. The
figure shows a perfect plant composed of a number of cells arranged
systematically in a star-like shape; Fig. 15 is the same species
without the colouring matter, in order to show the shape of the cells.
The Pediastrum reproduces by continual subdivision of the contents of
each cell into a number of smaller cells, termed “gonidia” on account
of their function on the perpetuation of the species. When a sufficient
number has been formed, they burst through the envelope of the original
cell, taking with them a portion of its internal layer, so as to form
a vesicle, in which they move actively. In a few minutes they arrange
themselves in a circle, and after a while they gradually assume the
perfect form, the whole process occupying about two days. Fig. 18
exhibits an example of the genus Desmidium. In this genus the cells are
either square or triangular in their form, having two teeth at their
angles, and twisted regularly throughout their length, causing the wavy
or oblique lines which distinguish them. The plants of this genus are
common, and may be found almost in any water. I may as well mention
that I have obtained nearly all the preceding species, together with
many others, from a little pond on Blackheath.
Fig. 7 is another desmid called Scenedesmus, in which the cells are
arranged in rows of from two to ten in number, the cell at each
extremity being often furnished with a pair of bristle-like appendages.
Fig. 14 is another species of the same plant, and both may be found in
the water supplied for drinking in London, as well as in any pond.
A common species of desmid is seen at Fig. 12, called Sphærozosma,
looking much like a row of stomata set chainwise together. It
multiplies by self-division.
Fig. 17 is a specimen of desmid named Cosmarium, plentifully found
in ponds on heaths and commons, and having a very pretty appearance
in the microscope, with its glittering green centre and beautifully
transparent envelope. The manner in which the Cosmarium conjugates is
very remarkable, and is shown at Fig. 19.
The two conjugating cells become very deeply cleft, and by degrees
separate, suffering the contents to pour out freely, and, as at present
appears, without any envelope to protect them. The mass, however,
soon acquires an envelope of its own, and by degrees assumes a dark
reddish-brown tint. It is now termed a sporangium, and is covered with
a vast number of projections, which in this genus are forked at their
tip, but in others, which also form sporangia, are simply pointed. The
Closteria conjugate after a somewhat similar manner, and it is not
unfrequent to find a pair in this condition, but in their case the
sporangium is quite smooth on its surface.
Public-domain text, read in full here on John Shaqi.
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