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鱼类细菌病原体分类学。

Taxonomy of bacterial fish pathogens.

机构信息

Institute of Aquaculture, Pathfoot Building, University of Stirling, Stirling FK9 4LA, Scotland, UK.

出版信息

Vet Res. 2011 Feb 2;42(1):20. doi: 10.1186/1297-9716-42-20.

Abstract

Bacterial taxonomy has progressed from reliance on highly artificial culture-dependent techniques involving the study of phenotype (including morphological, biochemical and physiological data) to the modern applications of molecular biology, most recently 16S rRNA gene sequencing, which gives an insight into evolutionary pathways (= phylogenetics). The latter is applicable to culture-independent approaches, and has led directly to the recognition of new uncultured bacterial groups, i.e. "Candidatus", which have been associated as the cause of some fish diseases, including rainbow trout summer enteritic syndrome. One immediate benefit is that 16S rRNA gene sequencing has led to increased confidence in the accuracy of names allocated to bacterial pathogens. This is in marked contrast to the previous dominance of phenotyping, and identifications, which have been subsequently challenged in the light of 16S rRNA gene sequencing. To date, there has been some fluidity over the names of bacterial fish pathogens, with some, for example Vibrio anguillarum, being divided into two separate entities (V. anguillarum and V. ordalii). Others have been combined, for example V. carchariae, V. harveyi and V. trachuri as V. harveyi. Confusion may result with some organisms recognized by more than one name; V. anguillarum was reclassified as Beneckea and Listonella, with Vibrio and Listonella persisting in the scientific literature. Notwithstanding, modern methods have permitted real progress in the understanding of the taxonomic relationships of many bacterial fish pathogens.

摘要

细菌分类学已经从依赖高度人为的培养依赖技术(涉及表型研究,包括形态学、生化和生理数据)发展到分子生物学的现代应用,最近是 16S rRNA 基因测序,这深入了解了进化途径(=系统发育学)。后者适用于非培养方法,并直接导致了新的未培养细菌群体的识别,即“暂定菌”,它们与一些鱼类疾病有关,包括虹鳟夏季肠炎综合征。一个直接的好处是,16S rRNA 基因测序提高了对细菌病原体命名准确性的信心。这与以前表型和鉴定的主导地位形成鲜明对比,在 16S rRNA 基因测序的基础上,这些鉴定后来受到了挑战。迄今为止,一些鱼类细菌病原体的名称存在一定的流动性,例如鳗弧菌被分为两个独立的实体(鳗弧菌和弧菌)。其他的则被合并了,例如弧菌、哈维氏弧菌和创伤弧菌被合并为哈维氏弧菌。一些生物体可能会因一个以上的名称而引起混淆;鳗弧菌被重新归类为贝氏弧菌和利斯顿氏菌,弧菌和利斯顿氏菌仍然存在于科学文献中。尽管如此,现代方法还是使我们对许多鱼类细菌病原体的分类关系有了更深入的了解。

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Taxonomy of bacterial fish pathogens.鱼类细菌病原体分类学。
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