The Diatomaceæ of Philadelphia and VicinityBoyer, Charles S. (Charles Sumner)
Science
The Diatomaceæ of Philadelphia and Vicinity
Boyer, Charles S. (Charles Sumner)
Diatoms -- Pennsylvania -- Philadelphia
{10}OIL GLOBULES.--It has been established by Pfitzer that starch and
sugar, as assimilation products, are replaced by oil in the cells of
diatoms ("da bekannlich Staerke und Zucker bei den Bacillariaceen nicht
nachzuweisen sind"). The oil drops are more or less numerous, of various
sizes, and are found in the cytoplasma, the cell-sap, and sometimes the
chromatophores. Mereschkowsky describes certain globules as elæoplasts,
which he divides into four kinds according to their number and position.
Whether all of these are oil globules is a question not yet determined.
Other bodies, known as "Buetschli granules," or volutin, and described as
"little blisters filled with a tolerably robust refractive substance," are
considered by Lauterborn to be a nitrogen reserve store. They are found in
the cytoplasma, or in the cell-sap, and can be fixed in picric acid and
stained in methylene blue.
NOTE.--For a discussion of the morphology of diatoms and a valuable résumé
of the investigations of Buetschli, Karsten, Lauterborn, Mereschkowsky,
Mueller, Pfitzer, Schuett, and others, the student is referred to "Der Bau
der Diatomzelle," by Dr. Otto Heinzerling, in "Bibliotheca Botanica," 1908.
CELL DIVISION
The growth of diatoms follows the usual method of cell division as
described by Sachs (Text Book of Botany, 2nd ed., p. 16): "The nucleus of a
cell which is about to divide becomes broader, assuming the form of a
biconcave lens, and its nucleolus breaks up into irregular granules which
together with its other granular contents begin to form a nuclear disc in
the equatorial plane. A delicate striation is now apparent in what is
becoming the long axis of the nucleus, at right angles to the nuclear disc,
and the characteristic nuclear spindle is gradually produced. The nuclear
disc splits into two halves lying side by side, each of which travels to
the corresponding pole of the nucleus; thus two nuclei are constituted
which are connected by fibrillæ."
The cell-wall and the chromatophore bands divide, each nucleus passes to
the centre, and two new cells are formed. In the meantime, to permit of
this division, the two siliceous valves separate, the girdle bands slipping
over each other, and opposite the larger or enclosing valve a new valve is
formed, the girdle band of which is seen later within the girdle of the
mother valve. Opposite the smaller valve of the original cell and adjoining
the new valve, another valve is formed which also produces a girdle within
the girdle of the smaller valve. As a result of division we have,
therefore, the valves of the original, or mother cell, the two new valves
and four girdle bands. (Pl. 40, Figs. 18 and 19.)
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