The Animal Parasites of ManFantham, Harold Benjamin
Science
The Animal Parasites of Man
Fantham, Harold Benjamin
Medical parasitology
The term Myxosporidia, which at the present day is universally
applied to the “psorosperm tubes,” was introduced by Bütschli
in 1881, who studied not only the structure and development of
the spores, but also the protoplasmic body of the parasites
(fig. 96), and confirmed the occurrence of numerous nuclei. Many
authors have made important additions to our knowledge of the
Myxosporidia: Perugia, Thélohan, Mingazzini, L. Pfeiffer, L. Cohn,
Doflein, Mercier, Schröder and Auerbach; while the presence of this
parasite outside the class of fishes has become known through Lutz,
Laveran, and others. The species causing disease in fishes have been
described by Ludwig, Railliet, Weltner, L. Pfeiffer, Zschokke, Hofer,
Doflein, Gurley, Plehn, Schuberg, Fantham and Porter. With regard to
classification the works of Thélohan (1895) and Gurley (1894) may be
mentioned.
[Illustration: FIG. 95.--Schematic representation of a spore of
_Myxobolus_. One polar capsule has protruded its filament; two nuclei
and a “vacuole” in the sporozoite. (After Doflein.)]
[Illustration: FIG. 96.--_Chloromyxum leydigi._ Active trophozoite
(parasitic in gall-bladder of skates, rays, dog-fish). _Ect_,
ectoplasm; _ps_, pseudopodia; _end_, endoplasm; _y_, yellow globules in
endoplasm; _sp_, spores, each with four polar capsules. × 525. (After
Thélohan.)]
The Myxosporidia live either free on the epithelial surface of hollow
organs (gall or urinary bladder, renal tubules, but never in the
intestine), or are enclosed in the tissues of their host. The gills
and muscular system are their favourite habitat, but other tissues or
organs may be attacked. Species of Myxosporidia are also known from
Amphibia, Reptilia, and a few invertebrates.
The free forms, which are often amœboid (fig. 96), move by the
aid of variously shaped pseudopodia, have a constant form, or may
exhibit contractions of the body. The tissue parasites often reach
a considerable size, so that the integument of the host forms
protuberances over them. They are of a roundish or irregular shape.
Frequently they are enveloped in a connective tissue covering formed
by the host.
The protoplasmic body in the trophic phase (fig. 96) shows a distinct
ectoplasm which is finely granular or sometimes striated, and an
endoplasm which is coarsely granular and contains many nuclei as
well as cell inclusions, such as crystals, pigment grains and fat
globules. The nuclei originate by division from the primitive nucleus
of the amœboid germ that issues from the spore. This amœbula may
or may not live intra-cellularly during the early stages of its
existence.
The multinucleate trophozoite of a Myxosporidian forms spores in
its endoplasm practically throughout its whole period of growth
(fig. 96). Vegetative reproduction by a process of external budding
or plasmotomy may also occur, as in _Myxidium lieberkühni_ from the
urinary bladder of the pike.
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