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
The free zoospores are of the form of a planoconvex lens, obtuse at the
edge. Beneath the plane face, out of the centre, and towards that point
of the margin which during the movement of the zoospore is foremost, is
a disk-shaped vacuole, with two ciliæ of unequal length attached to its
margin; the shorter cilia is directed forwards, and the longer in the
opposite direction, during the evolutions of the zoospores.
The zoospores are produced within from an hour and a half to three hours
after the sowing of the conidia in water. They are never absent if the
conidia are fresh, or even a month old, but beyond this period their
artificial generation is very uncertain. This little experiment is a
very simple and interesting one, and may be performed by any one who
will take the trouble to follow out these instructions.
From this simple experiment, let us turn for a moment to the plant in
its natural condition when affected by the white rust. If, after rain or
dew, when the little drops of moisture hang like pearls about the sickly
pallid leaves of the shepherd’s-purse, bespattered with the white
pustules of the rust, we collect and examine a drop of water from the
immediate neighbourhood of one of the pustules, we shall commonly find
empty conidia and zoospores in different stages of development.
[Illustration:
Plate XI.
W. West imp.
]
Water alone seems to be essential to them, and for this the conidia may
remain unchanged for a month, and literally burst into activity at the
first gentle shower, till the whole surface of the plant is swarming
with zoospores. We may no longer doubt that a true vegetable produces
from itself bodies endowed with active motion, resembling low forms of
animal life, and yet in themselves not animalcules, as some would
suggest, but essentially vegetable, as we shall hereafter demonstrate.
To scientific men this is not new, except as regards fungi, for in algæ
such bodies have long been recognized.
A second kind of reproductive organs are described by Dr. de Bary; and
if future examinations confirm his observations, as they doubtless will,
this feature is an important one. It is true that M. Caspary long since
detected similar bodies in moulds (allied to that which produces the
potato disease), but he only knew _them_ in a limited sense compared
with what De Bary has revealed. These fruits are hidden amid the tissues
of the plant on which the “white rust” is parasitic, and only betray
their presence by the coloration of those tissues. To these bodies it is
proposed to give the name of “oogonia” and “antheridia,” on account of
their presumed sexuality, the “oogonia” representing the female, and the
“antheridia” the male organs.
The oogonia are large spherical or ovoid cells, with a thickish membrane
containing a granular protoplasm, or formative fluid. They are produced
either terminally or laterally upon the threads of the mycelium, from
which they are separated by septa or partitions.
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