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TyrR is involved in the transcriptional regulation of biofilm formation and D-alanine catabolism in Azospirillum brasilense Sp7.

机译:TyrR参与了巴西细螺旋藻Sp7中生物膜形成和D-丙氨酸分解代谢的转录调控。

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摘要

Azospirillum brasilense is one of the most studied species of diverse agronomic plants worldwide. The benefits conferred to plants inoculated with Azospirillum have been primarily attributed to its capacity to fix atmospheric nitrogen and synthesize phytohormones, especially indole-3-acetic acid (IAA). The principal pathway for IAA synthesis involves the intermediate metabolite indole pyruvic acid. Successful colonization of plants by Azospirillum species is fundamental to the ability of these bacteria to promote the beneficial effects observed in plants. Biofilm formation is an essential step in this process and involves interactions with the host plant. In this study, the tyrR gene was cloned, and the translated product was observed to exhibit homology to TyrR protein, a NtrC/NifA-type activator. Structural studies of TyrR identified three putative domains, including a domain containing binding sites for aromatic amino acids in the N-terminus, a central AAA+ ATPase domain, and a helix-turn-helix DNA binding motif domain in the C-terminus, which binds DNA sequences in promoter-operator regions. In addition, a bioinformatic analysis of promoter sequences in A. brasilense Sp7 genome revealed that putative promoters encompass one to three TyrR boxes in genes predicted to be regulated by TyrR. To gain insight into the phenotypes regulated by TyrR, a tyrR-deficient strain derived from A. brasilense Sp7, named A. brasilense 2116 and a complemented 2116 strain harboring a plasmid carrying the tyrR gene were constructed. The observed phenotypes indicated that the putative transcriptional regulator TyrR is involved in biofilm production and is responsible for regulating the utilization of D-alanine as carbon source. In addition, TyrR was observed to be absolutely required for transcriptional regulation of the gene dadA encoding a D-amino acid dehydrogenase. The data suggested that TyrR may play a major role in the regulation of genes encoding a glucosyl transferase, essential signaling proteins, and amino acids transporters.
机译:巴西固氮螺菌是世界上对多种农艺植物研究最多的物种之一。接种Azospirillum的植物获得的好处主要归因于其固定大气氮和合成植物激素,尤其是吲哚-3-乙酸(IAA)的能力。 IAA合成的主要途径涉及中间体代谢产物吲哚丙酮酸。固氮螺旋菌属物种对植物的成功定殖是这些细菌促进在植物中观察到的有益作用的能力的基础。生物膜形成是该过程中必不可少的步骤,并涉及与宿主植物的相互作用。在这项研究中,克隆了tyrR基因,观察到翻译产物与NyrC / NifA型激活剂TyrR蛋白具有同源性。 TyrR的结构研究确定了三个推定的结构域,包括一个在N端包含芳香氨基酸结合位点的结构域,一个中央AAA + ATPase域和一个在C端结合的螺旋-转-螺旋DNA结合基序结构域启动子-操纵子区域中的DNA序列。此外,对巴西拟南芥Sp7基因组中启动子序列的生物信息学分析表明,推定的启动子在预计受TyrR调控的基因中包含一到三个TyrR盒。为了深入了解由TyrR调节的表型,构建了源自巴西拟南芥Sp7的tyrR缺陷型菌株,称为巴西拟南芥2116和带有携带tyrR基因的质粒的互补2116菌株。观察到的表型表明推定的转录调节子TyrR参与生物膜生产,并负责调节D-丙氨酸作为碳源的利用。另外,观察到TyrR绝对是编码D-氨基酸脱氢酶的dadA基因的转录调控所必需的。数据表明,TyrR可能在调节编码葡萄糖基转移酶,必需信号蛋白和氨基酸转运蛋白的基因中起主要作用。

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