Rust, Smut, Mildew, & Mould: An Introduction to the Study of Microscopic FungiCooke, M. C. (Mordecai Cubitt)
Science
Rust, Smut, Mildew, & Mould: An Introduction to the Study of Microscopic Fungi
Cooke, M. C. (Mordecai Cubitt)
Phytopathogenic fungi -- Great Britain
If we break open a grain of wheat infested with the “stinking rust” or
“bunt,” and then place some of the powder in a drop of water on a glass
slide, and submit this to the microscope, first using the half-inch
power, then the quarter, or fifth, and finally an eighth or tenth, we
shall find that this minute dust consists of myriads of globose brown
bodies termed spores, which possess certain reproductive functions.
These spores will be found mixed with a number of delicate branched
threads, to which they are attached by a short stalk or pedicel, visible
with the higher powers (fig. 86). The surface of the spores you will
also observe to be beautifully reticulated. These features just
described as visible in the “bunt” are the characteristics of the genus
to which it belongs (_Tilletea_), and of which it is the only British
species. An allied species infests the Sorghum or durra, a grain but
little cultivated in Europe, but found extensively in Africa and Asia,
and also apparently found on the _Bajra_ of India.
The interesting experiments of the Rev. M. J. Berkeley on the
germination of “bunt” spores have been already alluded to. They were
undertaken shortly after the outbreak of the potato disease, to
ascertain, if possible, the mode by which the minute spores of fungi
inoculate growing plants; and although at that time only a bare
suspicion of the nature of the bodies resulting from the germination of
“bunt” spores was entertained, succeeding examinations in the same
direction have brought to light extraordinary facts, and manifested the
progress of the successive developments of four generations. The spores
of “bunt” are larger than those of the different species of “smut,” and
reticulated on the surface (Plate V. fig. 86). When these are made to
germinate a kind of stem is protruded (fig. 87), upon which small
clusters of elongated thread-like spores of the second generation, or
sporidia, are produced (fig. 88). After a time these spores conjugate,
or become united by short transverse processes in the same manner as has
been observed in some of the lower forms of Algæ (fig. 89). The
conjugated spores in the next stage germinate and produce a third kind
of fruit, different from either of the preceding, and constituting a
third generation (fig. 90). These in turn germinate and produce a fourth
order of reproductive organs (fig. 91), so that in the process of growth
the “bunt” spores evidently pass through four generations. Hence, as one
result, the number of germinating bodies is greatly increased, as well
as their power of inflicting injury in a corresponding diminution in
size. There are still many points in the history of the growth and
development through successive generations of the “bunt” spores, but
enough is known, on the one hand, to show that this is a true vegetative
parasite, and not merely a diseased condition of the tissues of the
wheat plant, and on the other that it is perfectly distinct from all the
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