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Distinctive Expansion of Potential Virulence Genes in the Genome of the Oomycete Fish Pathogen Saprolegnia parasitica
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نویسنده
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jiang r.h.y. ,de bruijn i. ,haas b.j. ,belmonte r. ,löbach l. ,christie j. ,van den ackerveken g. ,bottin a. ,ups laboratoire de recherche en sciences végétales ,bulone v. ,díaz-moreno s.m. ,dumas b. ,ups laboratoire de recherche en sciences végétales ,fan l. ,gaulin e. ,ups laboratoire de recherche en sciences végétales ,govers f. ,grenville-briggs l.j. ,horner n.r. ,levin j.z. ,mammella m. ,meijer h.j.g. ,morris p. ,nusbaum c. ,oome s. ,phillips a.j. ,van rooyen d. ,rzeszutek e. ,saraiva m. ,secombes c.j. ,seidl m.f. ,snel b. ,stassen j.h.m. ,sykes s. ,tripathy s. ,van den berg h. ,vega-arreguin j.c. ,wawra s. ,young s.k. ,zeng q. ,dieguez-uribeondo j. ,russ c. ,tyler b.m. ,van west p.
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منبع
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plos genetics - 2013 - دوره : 9 - شماره : 6
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چکیده
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Oomycetes in the class saprolegniomycetidae of the eukaryotic kingdom stramenopila have evolved as severe pathogens of amphibians,crustaceans,fish and insects,resulting in major losses in aquaculture and damage to aquatic ecosystems. we have sequenced the 63 mb genome of the fresh water fish pathogen,saprolegnia parasitica. approximately 1/3 of the assembled genome exhibits loss of heterozygosity,indicating an efficient mechanism for revealing new variation. comparison of s. parasitica with plant pathogenic oomycetes suggests that during evolution the host cellular environment has driven distinct patterns of gene expansion and loss in the genomes of plant and animal pathogens. s. parasitica possesses one of the largest repertoires of proteases (270) among eukaryotes that are deployed in waves at different points during infection as determined from rna-seq data. in contrast,despite being capable of living saprotrophically,parasitism has led to loss of inorganic nitrogen and sulfur assimilation pathways,strikingly similar to losses in obligate plant pathogenic oomycetes and fungi. the large gene families that are hallmarks of plant pathogenic oomycetes such as phytophthora appear to be lacking in s. parasitica,including those encoding rxlr effectors,crinkler's,and necrosis inducing-like proteins (nlp). s. parasitica also has a very large kinome of 543 kinases,10% of which is induced upon infection. moreover,s. parasitica encodes several genes typical of animals or animal-pathogens and lacking from other oomycetes,including disintegrins and galactose-binding lectins,whose expression and evolutionary origins implicate horizontal gene transfer in the evolution of animal pathogenesis in s. parasitica. © 2013 jiang et al.
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آدرس
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broad institute of mit and harvard,cambridge,ma, United States, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen,united kingdom,laboratory of phytopathology,wageningen university,wageningen, Netherlands, broad institute of mit and harvard,cambridge,ma, United States, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen,united kingdom,scottish fish immunology research centre,school of biological sciences,university of aberdeen,aberdeen, United Kingdom, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen,united kingdom,scottish fish immunology research centre,school of biological sciences,university of aberdeen,aberdeen, United Kingdom, plant-microbe interactions,department of biology,utrecht university,utrecht, Netherlands, castanet-tolosan,france,cnrs,laboratoire de recherche en sciences végétales,auzeville,castanet-tolosan, France, division of glycoscience,school of biotechnology,royal institute of technology (kth),albanova university centre,stockholm, Sweden, division of glycoscience,school of biotechnology,royal institute of technology (kth),albanova university centre,stockholm, Sweden, castanet-tolosan,france,cnrs,laboratoire de recherche en sciences végétales,auzeville,castanet-tolosan, France, broad institute of mit and harvard,cambridge,ma, United States, castanet-tolosan,france,cnrs,laboratoire de recherche en sciences végétales,auzeville,castanet-tolosan, France, laboratory of phytopathology,wageningen university,wageningen,netherlands,centre for biosystems genomics,wageningen, Netherlands, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen,united kingdom,division of glycoscience,school of biotechnology,royal institute of technology (kth),albanova university centre,stockholm, Sweden, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom, broad institute of mit and harvard,cambridge,ma, United States, dipartimento di gestione dei sistemi agrari e forestali,università degli studi mediterranea,reggio calabria, Italy, laboratory of phytopathology,wageningen university,wageningen, Netherlands, department of biological sciences,bowling green state university,bowling green,oh, United States, broad institute of mit and harvard,cambridge,ma, United States, plant-microbe interactions,department of biology,utrecht university,utrecht, Netherlands, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom, cnrs,laboratoire de recherche en sciences végétales,auzeville,castanet-tolosan, France, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom, scottish fish immunology research centre,school of biological sciences,university of aberdeen,aberdeen, United Kingdom, centre for biosystems genomics,wageningen,netherlands,theoretical biology and bioinformatics,department of biology,utrecht university,utrecht, Netherlands, centre for biosystems genomics,wageningen,netherlands,theoretical biology and bioinformatics,department of biology,utrecht university,utrecht, Netherlands, plant-microbe interactions,department of biology,utrecht university,utrecht, Netherlands, broad institute of mit and harvard,cambridge,ma, United States, virginia bioinformatics institute,virginia polytechnic institute and state university,blacksburg,va, United States, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom, enes unidad león,universidad nacional autónoma de méxico,león, Mexico, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom, broad institute of mit and harvard,cambridge,ma, United States, broad institute of mit and harvard,cambridge,ma, United States, departamento de micología,real jardín botánico csic,madrid, Spain, broad institute of mit and harvard,cambridge,ma, United States, virginia bioinformatics institute,virginia polytechnic institute and state university,blacksburg,va,united states,department of botany and plant pathology,oregon state university,corvallis,or, United States, aberdeen oomycete laboratory,school of medical sciences,university of aberdeen,aberdeen, United Kingdom
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Authors
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