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Transcriptomic analysis of responses to exudates reveal genes required for rhizosphere competence of the endophyte Azoarcus sp. strain BH72

机译:对分泌液的反应的转录组学分析揭示了内生菌Azoarcus sp。的根际能力所需的基因。菌株BH72

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Endophytic colonization is a very complex process which is not yet completely understood. Molecules exuded by the plants may act as signals which influence the ability of the microbe to colonize the host or survive in the rhizosphere. Here we used the whole genome microarray approach to investigate the response of the diazotrophic model endophyte, Azoarcus sp. strain BH72, to exudates of O. sativa cv. Nipponbare in order to identify differentially regulated genes. On exposure to exudates, an overall expression of 4.4% of the 3992 protein coding genes of Azoarcus sp. strain BH72 was altered, out of which 2.4% was upregulated and 2.0% was downregulated. Genes with modulated expression included a few whose involvement in plant-microbe interaction had already been established, whereas a large fraction comprised of genes encoding proteins with putative or unknown functions. Mutational analysis of several differentially regulated genes like those encoding a minor pilin PilX, signal transduction proteins containing GGDEF domains and a serine-threonine kinase as a putative component of the type IV secretion system (T6SS), revealed their role in host colonization. Our data suggest that strain BH72 may be primed for the endophytic lifestyle by exudates, as the expression of bacterial genes relevant for endophytic colonization of roots is induced by root exudates.
机译:内生菌落定殖是一个非常复杂的过程,目前尚未完全了解。植物分泌的分子可以作为信号,影响微生物在宿主体内定殖或在根际中生存的能力。在这里,我们使用了全基因组微阵列方法来研究重氮营养型内生菌Azoarcus sp。的响应。菌株BH72,到O. sativa cv的渗出液。为了鉴定差异调节的基因,进行了Nipponbare。暴露于渗出液时,Azoarcus sp的3992个蛋白质编码基因的总表达率为4.4%。改变了菌株BH72,其中2.4%被上调而2.0%被下调。具有调节表达的基因包括少数已经参与植物-微生物相互作用的基因,而很大一部分由编码具有推定或未知功能的蛋白质的基因组成。对几种差异调节基因的突变分析,例如编码较小的菌毛蛋白PilX,含有GGDEF结构域和丝氨酸-苏氨酸激酶作为IV型分泌系统(T6SS)假定成分的信号转导蛋白,揭示了它们在宿主定殖中的作用。我们的数据表明,菌株BH72可能由分泌液引发内生生活方式,因为与根的内生菌定植相关的细菌基因的表达是由根分泌液诱导的。

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