Bacteria: Especially as they are related to the economy of nature, to industrial processes, and to the public healthNewman, George, Sir
Science
Bacteria: Especially as they are related to the economy of nature, to industrial processes, and to the public health
Newman, George, Sir
Bacteria; Bacteriology
_The Nitrous Organism_ (Nitrosomonas). Prior to Koch's gelatine method
the isolation of this bacterium proved an exceedingly difficult task.
But even the adoption of this isolating method seemed to give no better
results, and for an excellent reason: the nitrifying organisms will
not grow on gelatine. To Winogradsky and Percy Frankland belongs the
credit of separately isolating the nitrous organism on the surface of
gelatinous silica containing the necessary inorganic food. Professor
Warington, in his lectures under the Lawes Agricultural Trust, has
described this important germ as follows:
"The organism as found in suspension in a freshly nitrified
solution consists largely of nearly spherical corpuscles,
varying extremely in size. The largest of these corpuscles
barely reaches a diameter of one-thousandth of a millimetre,
and some are so minute as to be hardly discernible in
photographs. The larger ones are frequently not strictly
circular, and are sometimes seen in the act of dividing.
"Besides the form just described, there is another, not
universally present in solutions, in which the length is
considerably greater than its breadth. The shape varies, being
occasionally a regular oval, but sometimes largest at one end,
and sometimes with the ends truncated. The circular organisms
are probably the youngest.
"This organism grows in broth, diluted milk, and other
solutions without producing turbidity. When acting on ammonia
it produces only nitrites. It is without action on potassium
nitrite. It is, in fact, the nitrous organism which, as we
have previously seen, may be separated from soil by successive
cultivations in ammonium carbonate solution."
The elongated forms appear to be a sign of arrested growth. Normally
the organ is about 1.8 µ long, or nearly three times as long as the
nitric organism. It possesses a gelatinous capsule. "The motile cells,
stained by Löffler's method, are seen to have a flagellum in the form
of a spiral." When grown on silica the nitrous organism appears in
the same two forms--zooglea and free cells--as when cultivated in a
fluid. It commences to show growth in about four days, and is at its
maximum on about the tenth day. Winogradsky found that there were
considerable differences in the morphology of the organism according to
the soil from which it was taken. One of the Java soils he investigated
contained a nitrous organism having a spiral flagellum of thirty
micromillimetres; but its movement was slow.
As we have already seen, the most astonishing property of this organism
is its ability to grow and perform its specific function in solutions
absolutely devoid of organic matter. Some authorities hold that it
acquires its necessary carbon from carbonic acid. The mode of culturing
it is as follows:
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