Common objects of the microscopeWood, J. G. (John George)
Science
Common objects of the microscope
Wood, J. G. (John George)
Microscopes; Microscopy
Another very remarkable family of confervoid algæ is that which is
known under the name of Oscillatoriæ, from the oscillating movement
of the plant. They are always long and filamentous in character, and
may be seen moving up and down with a curious irregularity of motion.
Their growth is extremely rapid, and may be watched under a tolerably
powerful lens, thus giving many valuable hints as to the mode by
which these plants are reproduced. One of the commonest species is
represented at Fig. 8.
Figs. 9, 10, and 11 are examples of another family, called technically
the Zygnemaceæ, because they are so constantly yoked together by
conjugation. They all consist of a series of cylindrical cells, set end
to end, and having their green contents arranged in similar patterns.
Two of the most common and typical species are here given.
Fig. 9 is the Spirogyra, so called from the spiral arrangement of
the chlorophyll; and Fig. 10 is the Tyndaridea, or Zygnema, as it is
called by some writers. A casual inspection will show how easy it is
to distinguish the one from the other. Fig. 11 represents a portion of
the Tyndaridea during the process of conjugation, showing the tube of
connection between the cells and one of the spores.
* * * * *
We now arrive at the diatoms, so called because of their method of
reproduction, in which it appears as if a cut were made right along the
original cell. The commonest of these plants is the Diatóma vulgáre,
seen in Fig. 21 as it appears while growing. The reproduction of this
plant is effected by splitting down the centre, each half increasing
to the full size of the original cell; and in almost every specimen of
water taken from a pond, examples of this diatom undergoing the process
of division will be distinguished. It also grows by conjugation. The
diatoms are remarkable for the delicate shell or flinty matter which
forms the cell skeleton, and which will retain its shape even after
intense heat and the action of nitric acid. While the diatoms are
alive, swimming through the water, their beautiful markings are clearly
distinct, glittering as if the form were spun from crystalline glass.
Just above the figure, and to the right hand, are two outlines of
single cells of this diatom, the one showing the front view and the
other the profile.
Fig. 20 is an example of a diatom--Cocconéma lanceolátum--furnished
with a stalk. The left-hand branch sustains a “frustule” exhibiting the
front view, while the other is seen sideways.
Another common diatom is shown in Fig. 23, and is known by the name of
Synedra. This constitutes a very large genus, containing about seventy
known species. In this genus the frustules are at first arranged upon
a sort of cushion, but in course of time they mostly break away from
their attachment. In some species they radiate in every direction from
the cushion, like the spikes of the ancient cavalier’s mace.
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