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首页> 外文期刊>BMC Microbiology >Phylogenetic analysis of a gene cluster encoding an additional, rhizobial-like type III secretion system that is narrowly distributed among Pseudomonas syringae strains
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Phylogenetic analysis of a gene cluster encoding an additional, rhizobial-like type III secretion system that is narrowly distributed among Pseudomonas syringae strains

机译:系统发育分析的基因簇,该簇编码在丁香假单胞菌菌株中分布较窄的其他根瘤菌型III型分泌系统

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Background The central role of Type III secretion systems (T3SS) in bacteria-plant interactions is well established, yet unexpected findings are being uncovered through bacterial genome sequencing. Some Pseudomonas syringae strains possess an uncharacterized cluster of genes encoding putative components of a second T3SS (T3SS-2) in addition to the well characterized Hrc1 T3SS which is associated with disease lesions in host plants and with the triggering of hypersensitive response in non-host plants. The aim of this study is to perform an in silico analysis of T3SS-2, and to compare it with other known T3SSs. Results Based on phylogenetic analysis and gene organization comparisons, the T3SS-2 cluster of the P. syringae pv. phaseolicola strain is grouped with a second T3SS found in the pNGR234b plasmid of Rhizobium sp. These additional T3SS gene clusters define a subgroup within the Rhizobium T3SS family. Although, T3SS-2 is not distributed as widely as the Hrc1 T3SS in P. syringae strains, it was found to be constitutively expressed in P. syringae pv phaseolicola through RT-PCR experiments. Conclusions The relatedness of the P. syringae T3SS-2 to a second T3SS from the pNGR234b plasmid of Rhizobium sp., member of subgroup II of the rhizobial T3SS family, indicates common ancestry and/or possible horizontal transfer events between these species. Functional analysis and genome sequencing of more rhizobia and P. syringae pathovars may shed light into why these bacteria maintain a second T3SS gene cluster in their genome.
机译:背景技术III型分泌系统(T3SS)在细菌与植物相互作用中的核心作用已得到充分确立,但细菌基因组测序却发现了意想不到的发现。某些丁香假单胞菌菌株除具有特征明确的Hrc1 T3SS外,还具有编码第二个T3SS(T3SS-2)推定成分的未表征基因簇,该Hrc1 T3SS与寄主植物中的病害相关并与非寄主中的超敏反应触发有关植物。这项研究的目的是对T3SS-2进行计算机分析,并将其与其他已知的T3SS进行比较。结果基于系统发育分析和基因组织比较,丁香假单胞菌p3的T3SS-2簇。菜豆属菌株与根瘤菌spNGR234b质粒中发现的第二个T3SS分组。这些额外的T3SS基因簇定义了根瘤菌T3SS家族中的一个亚组。尽管在丁香假单胞菌菌株中,T3SS-2的分布不如Hrc1 T3SS广泛,但通过RT-PCR实验发现它在丁香假单胞菌pv phaseolicola中组成性表达。结论丁香假单胞菌T3SS-2与来自根瘤菌T3SS家族II亚组成员Rhizobium sp。的pNGR234b质粒的第二个T3SS的相关性表明了这些物种之间的共同祖先和/或可能的水平转移事件。更多的根瘤菌和丁香假单胞菌致病菌的功能分析和基因组测序可能会阐明为什么这些细菌在其基因组中保留了第二个T3SS基因簇。

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