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
These zoospores are oval, or semi-oval, with a structure resembling that
of the “white rusts,” save that the two ciliæ, or vibratile hairs,
proceed from the same point. The number of zoospores from each acrospore
of the potato mould is stated to be from six to sixteen, and in the
parsnip mould from six to fourteen. Their ultimate development is the
same as has already been described. In the potato mould, the production
of the zoospores is much favoured by the exclusion of light.
Another mode of germination in the acrospores of the potato mould has
been observed by the same eminent mycologist. This results when the
spores are sown upon a humid body, or on the _surface_ of a drop of
water. The acrospore emits from its summit a simple tube, the extremity
of which swells into an oval vesicle; into this the contents pass, and
it isolates itself by a partition from the germ-tube. Thus it becomes a
duplicate of the acrospore from whence it was derived. This secondary
body has also the power of producing a tertiary cellule in a similar
manner. Both the second and third cellule, when _immersed_ in water,
produce zoospores in the ordinary manner, as above described.
Yet another and a third mode of germination is described by the same
author, in which the acrospore emits from its apex a germ-tube, which
elongates considerably; and into this long and tortuous tube the
contents of the acrospore pass, and accumulate at the opposite
extremity.
The germ-tubes, produced in the manner last described, when developed on
the surface of a favourable plant, perforate the cells of the epidermis,
or enter by the stomata. In the case of the potato mould, the germ-tubes
enter by the stomata; but in the majority of species the germ-tubes do
not enter by the natural pores of the leaves upon which the acrospores
are sown, but perforate the cellules, and thus effect admission into the
tissues of the plant, where they extend, ramify themselves, and become a
mycelium. This mycelium originates branched threads, bearing acrospores
at the tips of their branchlets, and in many species of _Peronospora_
another kind of reproductive body upon the threads of the mycelium
itself. To these bodies we must briefly address ourselves.
This last kind of reproductive organs (not yet positively found in the
potato mould) appear to be wholly analogous to the oogonia of the “white
rusts” already described, producing oospores in like manner. Dr. de Bary
avows with regret that his numerous efforts to observe the germination
of these oospores were unsuccessful. Nevertheless, he considers that the
perfect resemblance between them and the oospores of the “white rusts”
will justify him in concluding that the germination in both is very
similar. It will be unnecessary to repeat here the observations already
made on the growth and development of oogones and zoospores. What has
been advanced respecting these organs in _Cystopus_ will apply also to
_Peronospora_.
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