Scanning and transmission electron microscopy of the histopathological impact of Macrogyrodactylus clarii (Monogenea: Gyrodactylidae) on the gills of catfish, Clarias gariepinus
Jazyk angličtina Země Česko Médium electronic
Typ dokumentu časopisecké články
PubMed
27311695
DOI
10.14411/fp.2016.017
PII: 2016.017
Knihovny.cz E-zdroje
- Klíčová slova
- aquatic health, fish disease, histopathology, monogeneans, ultrastructure,
- MeSH
- infekce červy třídy Trematoda parazitologie patologie MeSH
- mikroskopie elektronová rastrovací MeSH
- nemoci ryb parazitologie patologie MeSH
- sumci parazitologie MeSH
- transmisní elektronová mikroskopie MeSH
- Trematoda ultrastruktura MeSH
- žábry patologie ultrastruktura MeSH
- zvířata MeSH
- Check Tag
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
Scanning and transmission electron microscopy (TEM) were used to study the histopathological effects of the monogenean Macrogyrodactylus clarii Gussev, 1961 on the gills of the catfish Clarias gariepinus (Burchell). Suction generated during attachment created 'footprints' on host surfaces in which the host tissues were elevated above the general gill surface. 'Footprints' were bordered by four clefts caused by the muscular flaps on the anterior, lateral and posterior margins of the haptor. The hamuli points penetrate the gill tissue but no evidence was found for the insertion of the marginal hooklets. At the site of attachment, host cells adjacent to the lateral flaps often appeared compressed and widely spaced with large intercellular spaces. Desquamation of these surface epithelia was also apparent and some of the widely spaced epithelial cells had pseudopodium-like processes. Cells within the upper surface epithelial layer of the host were vacuolated and necrotic. Ruptured blood capillaries (blood spaces) in the secondary gill lamellae contained atypical compressed erythrocytes, agranular and granular leucocytes and evidence of haemorrhaging. Cells with fibrotic cytoplasm, putative phagocytes and host mucous cells were evidence of a host response at the site of parasite attachment. The possible role of these cells is discussed in relation to host resistance against infection.
Biology Department College of Medicine University of Dammam Kingdom of Saudi Arabia
School of Biological Sciences University of East Anglia Norwich UK
School of Biosciences Cardiff University UK
School of Biosciences Cardiff University UK;
Zoology Department Faculty of Science Mansoura University Mansoura Egypt
Zoology Department Faculty of Science Mansoura University Mansoura Egypt;
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