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Areospora rohanae n.gen. n.sp. (Microsporidia; Areosporiidae n. fam.) elicits multi-nucleate giant-cell formation in southern king crab (Lithodes santolla).
Stentiford, G D; Bateman, K S; Feist, S W; Oyarzún, S; Uribe, J C; Palacios, M; Stone, D M.
Affiliation
  • Stentiford GD; European Union Reference Laboratory for Crustacean Disease, Centre for Environment, Fisheries and Aquaculture Science (Cefas), Weymouth Laboratory, Weymouth, Dorset DT4 8UB, United Kingdom. Electronic address: grant.stentiford@cefas.co.uk.
  • Bateman KS; European Union Reference Laboratory for Crustacean Disease, Centre for Environment, Fisheries and Aquaculture Science (Cefas), Weymouth Laboratory, Weymouth, Dorset DT4 8UB, United Kingdom.
  • Feist SW; European Union Reference Laboratory for Crustacean Disease, Centre for Environment, Fisheries and Aquaculture Science (Cefas), Weymouth Laboratory, Weymouth, Dorset DT4 8UB, United Kingdom.
  • Oyarzún S; Departamento de Ciencias y Recursos Naturales, Facultad de Ciencias, Universidad de Magallanes, P.O. Box 113-D, Punta Arenas, Chile.
  • Uribe JC; Instituto de la Patagonia, Universidad de Magallanes, P.O. Box 113-D, Punta Arenas, Chile.
  • Palacios M; Departamento de Ciencias y Recursos Naturales, Facultad de Ciencias, Universidad de Magallanes, P.O. Box 113-D, Punta Arenas, Chile.
  • Stone DM; European Union Reference Laboratory for Crustacean Disease, Centre for Environment, Fisheries and Aquaculture Science (Cefas), Weymouth Laboratory, Weymouth, Dorset DT4 8UB, United Kingdom.
J Invertebr Pathol ; 118: 1-11, 2014 May.
Article in En | MEDLINE | ID: mdl-24566191
ABSTRACT
This paper utilises histological, ultrastructure and molecular phylogenetic data to describe a novel genus and species (Areospora rohanae n.gen., n.sp.) within the phylum Microsporidia. Phylogenetic and morphological distinction from other known lineages within the phylum also provide strong support for erection of a new family (Areosporiidae n. fam) to contain the parasite. Recognised via lesions observed by workers in king crab processing facilities in southern Chile, the parasite elicits giant cell formation in infected crabs. Merogony within haemocytes and fixed phagocytes proceeds apparent fusion of infected cells to produce multinucleate syncitia in which further development of the parasite occurs. Subsequent recruitment of adjacent cells within the haemal spaces of the hepatopancreas, the podocytes of the gill, and particularly in the subcuticular connective tissues, characterises the pathogenesis of A. rohanae. In late stages of infection, significant remodelling of the subcuticular tissues corresponds to the clinical lesions observed within processing plants. Sporogony of A. rohanae also occurs within the syncitial cytoplasm and culminates in production of bizarre spores, ornamented with distinctive tubular bristles. Spores occur in sets of 8 within a sporophorous vesicle. The description of A. rohanae offers considerable insight into the pathogenesis of giant-cell forming Microsporidia, signifies a new lineage of giant-cell forming Microsporidia in marine hosts, and may reflect emergence of a commercially-significant pathogen in the southern ocean Lithodes santolla fishery.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Giant Cells / Microsporidia / Brachyura Limits: Animals Language: En Journal: J Invertebr Pathol Year: 2014 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Giant Cells / Microsporidia / Brachyura Limits: Animals Language: En Journal: J Invertebr Pathol Year: 2014 Document type: Article
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