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多样化选择推动丁香假单胞菌III型分泌系统菌毛的进化。

Diversifying selection drives the evolution of the type III secretion system pilus of Pseudomonas syringae.

作者信息

Guttman David S, Gropp Susan J, Morgan Robyn L, Wang Pauline W

机构信息

Department of Botany, Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto, Ontario, Canada.

出版信息

Mol Biol Evol. 2006 Dec;23(12):2342-54. doi: 10.1093/molbev/msl103. Epub 2006 Sep 1.

Abstract

The plant pathogenic bacterium Pseudomonas syringae uses a type III secretion system to inject virulence proteins directly into the cytoplasm of its hosts. The P. syringae type III secretion apparatus is encoded, in part, by the HrpZ operon, which carries the hrpA gene encoding the pilin subunit of the pilus, various components of the structural apparatus, and the HrpZ harpin protein that is believed to produce pores in the host cell membrane. The pilus of the type III system comes into direct contact with the host cell and is, therefore, a likely target of the host's pathogen surveillance systems. We sequenced and analyzed 22 HrpZ operons from P. syringae strains spanning the diversity of the species. Selection analyses, including K(a)/K(s) tests and Tajima's D, revealed strong diversifying selection acting on the hrpA gene. This form of selection enables pathogens to maintain genetic diversity within their populations and is often driven by selection imposed by host defense systems. The HrpZ operon also revealed a single significant recombination event that dramatically changed the evolutionary relationships among P. syringae strains from 2 quite distinct phylogroups. This recombination event appears to have introduced genetic diversity into a clade of strains that may now be undergoing positive selection. The identification of diversifying selection acting on the Hrp pilus across the whole population sample and positive selection within one P. syringae lineage supports a trench warfare coevolutionary model between P. syringae and its plant hosts.

摘要

植物病原菌丁香假单胞菌利用Ⅲ型分泌系统将毒力蛋白直接注入宿主细胞的细胞质中。丁香假单胞菌的Ⅲ型分泌装置部分由hrpZ操纵子编码,该操纵子携带编码菌毛菌毛蛋白亚基的hrpA基因、结构装置的各种组分以及据信能在宿主细胞膜上形成孔道的HrpZ类过敏反应激发蛋白。Ⅲ型系统的菌毛与宿主细胞直接接触,因此很可能是宿主病原体监测系统的目标。我们对来自丁香假单胞菌菌株的22个hrpZ操纵子进行了测序和分析,这些菌株涵盖了该物种的多样性。包括Ka/Ks测试和 Tajima's D在内的选择分析表明,hrpA基因受到强烈的多样化选择。这种选择形式使病原体能够在其种群中维持遗传多样性,并且通常由宿主防御系统施加的选择驱动。hrpZ操纵子还显示出一个显著的重组事件,该事件极大地改变了来自两个截然不同系统发育组的丁香假单胞菌菌株之间的进化关系。这种重组事件似乎已将遗传多样性引入到一个现在可能正在经历正选择的菌株分支中。在整个种群样本中对Hrp菌毛进行多样化选择的鉴定以及在一个丁香假单胞菌谱系中进行正选择的鉴定,支持了丁香假单胞菌与其植物宿主之间的堑壕战协同进化模型。

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