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昆虫致病性且代谢功能多样的土壤细菌嗜虫假单胞菌的全基因组序列

Complete genome sequence of the entomopathogenic and metabolically versatile soil bacterium Pseudomonas entomophila.

作者信息

Vodovar Nicolas, Vallenet David, Cruveiller Stéphane, Rouy Zoé, Barbe Valérie, Acosta Carlos, Cattolico Laurence, Jubin Claire, Lajus Aurélie, Segurens Béatrice, Vacherie Benoît, Wincker Patrick, Weissenbach Jean, Lemaitre Bruno, Médigue Claudine, Boccard Frédéric

机构信息

Centre de Génétique Moléculaire, Centre National de la Recherche Scientifique, 91198 Gif-sur-Yvette, France.

出版信息

Nat Biotechnol. 2006 Jun;24(6):673-9. doi: 10.1038/nbt1212. Epub 2006 May 14.

Abstract

Pseudomonas entomophila is an entomopathogenic bacterium that, upon ingestion, kills Drosophila melanogaster as well as insects from different orders. The complete sequence of the 5.9-Mb genome was determined and compared to the sequenced genomes of four Pseudomonas species. P. entomophila possesses most of the catabolic genes of the closely related strain P. putida KT2440, revealing its metabolically versatile properties and its soil lifestyle. Several features that probably contribute to its entomopathogenic properties were disclosed. Unexpectedly for an animal pathogen, P. entomophila is devoid of a type III secretion system and associated toxins but rather relies on a number of potential virulence factors such as insecticidal toxins, proteases, putative hemolysins, hydrogen cyanide and novel secondary metabolites to infect and kill insects. Genome-wide random mutagenesis revealed the major role of the two-component system GacS/GacA that regulates most of the potential virulence factors identified.

摘要

嗜虫假单胞菌是一种昆虫病原细菌,摄入后可杀死黑腹果蝇以及来自不同目的昆虫。测定了其590万个碱基对基因组的完整序列,并与四种假单胞菌属物种的测序基因组进行了比较。嗜虫假单胞菌拥有与亲缘关系密切的恶臭假单胞菌KT2440菌株大部分的分解代谢基因,揭示了其代谢的多功能特性及其土壤生存方式。还发现了一些可能有助于其昆虫致病特性的特征。对于一种动物病原体而言出人意料的是,嗜虫假单胞菌没有III型分泌系统和相关毒素,而是依靠一些潜在的毒力因子(如杀虫毒素、蛋白酶、假定的溶血素、氰化氢和新型次生代谢产物)来感染和杀死昆虫。全基因组随机诱变揭示了双组分系统GacS/GacA的主要作用,该系统调控着所鉴定出的大多数潜在毒力因子。

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