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对海洋细菌属纤杆菌属进行的多位点序列分析表明,鱼类致病性和水产养殖系统的地方性定殖存在平行进化。

Multilocus sequence analysis of the marine bacterial genus Tenacibaculum suggests parallel evolution of fish pathogenicity and endemic colonization of aquaculture systems.

作者信息

Habib Christophe, Houel Armel, Lunazzi Aurélie, Bernardet Jean-François, Olsen Anne Berit, Nilsen Hanne, Toranzo Alicia E, Castro Nuria, Nicolas Pierre, Duchaud Eric

机构信息

Virologie et Immunologie Moléculaires UR892, INRA, Jouy-en-Josas, France Mathémathique Informatique et Génome UR1077, INRA, Jouy-en-Josas, France.

Virologie et Immunologie Moléculaires UR892, INRA, Jouy-en-Josas, France.

出版信息

Appl Environ Microbiol. 2014 Sep;80(17):5503-14. doi: 10.1128/AEM.01177-14. Epub 2014 Jun 27.

Abstract

The genus Tenacibaculum, a member of the family Flavobacteriaceae, is an abundant component of marine bacterial ecosystems that also hosts several fish pathogens, some of which are of serious concern for marine aquaculture. Here, we applied multilocus sequence analysis (MLSA) to 114 representatives of most known species in the genus and of the worldwide diversity of the major fish pathogen Tenacibaculum maritimum. Recombination hampers precise phylogenetic reconstruction, but the data indicate intertwined environmental and pathogenic lineages, which suggests that pathogenicity evolved independently in several species. At lower phylogenetic levels recombination is also important, and the species T. maritimum constitutes a cohesive group of isolates. Importantly, the data reveal no trace of long-distance dissemination that could be linked to international fish movements. Instead, the high number of distinct genotypes suggests an endemic distribution of strains. The MLSA scheme and the data described in this study will help in monitoring Tenacibaculum infections in marine aquaculture; we show, for instance, that isolates from tenacibaculosis outbreaks in Norwegian salmon farms are related to T. dicentrarchi, a recently described species.

摘要

黄杆菌科的纤杆菌属是海洋细菌生态系统的重要组成部分,该生态系统中还存在多种鱼类病原体,其中一些对海水养殖构成严重威胁。在此,我们对该属中最知名的物种以及主要鱼类病原体——海生纤杆菌在全球范围内的多样性的114个代表菌株进行了多位点序列分析(MLSA)。重组妨碍了精确的系统发育重建,但数据表明环境谱系和致病谱系相互交织,这表明致病性在多个物种中独立进化。在较低的系统发育水平上,重组也很重要,海生纤杆菌物种构成了一个紧密的分离株群体。重要的是,数据未显示出与国际鱼类运输相关的远距离传播迹象。相反,大量不同的基因型表明菌株呈地方流行性分布。本研究中描述的MLSA方案和数据将有助于监测海水养殖中的纤杆菌感染;例如,我们发现挪威鲑鱼养殖场中十腕杆菌病爆发的分离株与最近描述的物种——真鲷纤杆菌有关。

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