Distinctive Expansion of Potential Virulence Genes in the Genome of the Oomycete Fish Pathogen Saprolegnia parasitica

@inproceedings{Jiang2013DistinctiveEO,
  title={Distinctive Expansion of Potential Virulence Genes in the Genome of the Oomycete Fish Pathogen Saprolegnia parasitica},
  author={Rays H. Y. Jiang and Irene de Bruijn and Brian J. Haas and Rodrigo Espada Belmonte and Lars Loebach and James S. Christie and Guido van den Ackerveken and Arnaud Bottin and Vincent Bulone and Sara M. D{\'i}az-Moreno and Bernard Dumas and Lin Fan and Elodie Gaulin and Francine Govers and Laura J. Grenville-Briggs and Neil R. Horner and Joshua Z Levin and Marco Antonio Mammella and Harold J G Meijer and Paul F. Morris and Chad Nusbaum and Stan Oome and Andrew J. Phillips and David van Rooyen and Elżbieta Rzeszutek and Michelle M Saraiva and Christopher J Secombes and Michael F. Seidl and Berend Snel and Joost H M Stassen and Sean M. Sykes and Sucheta Tripathy and Herbert van den Berg and Julio C. Vega-Arregu{\'i}n and Stephan Wawra and Sarah K. Young and Qiandong Zeng and Javier Di{\'e}guez-Uribeondo and C. Babcock Russ and Brett M. Tyler and Pieter van West},
  booktitle={PLoS genetics},
  year={2013}
}
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… CONTINUE READING

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