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首页> 外文期刊>Scientific reports. >Characterization of the relationship between polar and lateral flagellar structural genes in the deep-sea bacterium Shewanella piezotolerans WP3
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Characterization of the relationship between polar and lateral flagellar structural genes in the deep-sea bacterium Shewanella piezotolerans WP3

机译:深海菌籽坦布拉压电酮WP3中侧缘鞭毛结构基因关系的表征

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摘要

Bacteria with a dual flagellar system, which consists of a polar flagellum (PF) and several lateral flagella (LF), have been identified in diverse environments. Nevertheless, whether and how these two flagellar systems interact with each other is largely unknown. In the present study, the relationship between the structural genes for the PF and LF of the deep-sea bacterium Shewanella piezotolerans WP3 was investigated by genetic, phenotypic and phylogenetic analyses. The mutation of PF genes induced the expression of LF genes and the production of LF in liquid medium, while the defective LF genes led to a decrease in PF gene transcription. However, the level of PF flagellin remained unchanged in LF gene mutants. Further investigation showed that the flgH2 gene (encoding LF L-ring protein) can compensate for mutations of the flgH1 gene (encoding PF L-ring protein), but this compensation does not occur between the flagellar hook-filament junction proteins (FlgL1, FlgL2). Swarming motility was shown to specifically require LF genes, and PF genes cannot substitute for the LF genes in the lateral flagella synthesis. Considering the importance of flagella-dependent motility for bacterial survival in the abyssal sediment, our study thus provided a better understanding of the adaptation strategy of benthic bacteria.
机译:具有双鞭毛系统的细菌,其包括极性鞭毛(PF)和几个横向壁图(LF),已经在不同的环境中被识别。尽管如此,这两个鞭毛系统是否以及如何彼此交互是很大程度上未知的。在本研究中,通过遗传学,表型和系统发育分析研究了深海菌肺部压电体WP3的PF和LF的结构基因之间的关系。 PF基因的突变诱导LF基因的表达和LF在液体培养基中的产生,而缺陷的LF基因导致PF基因转录的降低。然而,在LF基因突变体中,PF鞭毛蛋白的水平保持不变。进一步的研究表明,FLGH2基因(编码LF L-环蛋白)可以补偿FLGH1基因的突变(编码PF L-环蛋白),但在鞭毛钩线结蛋白(FLGL1,FLGL2之间不会发生这种补偿)。显示蜂拥而至特异性需要LF基因,并且PF基因不能替代横向鞭毛合成中的LF基因。考虑到鞭毛依赖性运动对深度沉积物中的细菌存活的重要性,我们的研究提供了更好地理解底栖细菌的适应策略。

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