首页> 外文期刊>Molecular Plant-Microbe Interactions >Systematic Mutagenesis of All Predicted gntR Genes in Xanthomonas campestris pv. campestris Reveals a GntR Family Transcriptional Regulator Controlling Hypersensitive Response and Virulence
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Systematic Mutagenesis of All Predicted gntR Genes in Xanthomonas campestris pv. campestris Reveals a GntR Family Transcriptional Regulator Controlling Hypersensitive Response and Virulence

机译:Xanthomonas campestris pv中所有预测的gntR基因的系统诱变。 campestris揭示了控制超敏反应和毒力的GntR家族转录调节因子

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The GntR family is one of the most abundant and widely distributed groups of helix-turn-helix transcriptional regulators in bacteria. Six open reading frames in the genome of the plant pathogen Xanthomonas campestris pv. campestris were predicted to encode GntR regulators. All six of the predicted GntR-encoding genes were individually mutagenized and mutants from five of them were successfully obtained. Plant disease response assays revealed that one, whose product belongs to the YtrA subfamily and has been named HpaR1, is involved in the hypersensitive response (HR) and virulence. Electrophoretic mobility shift assays and in vitro transcription assays revealed that HpaR1 could repress its own transcription level through binding to its promoter sequence, indicating an autoregulatory feedback inhibition mechanism for HpaR1 expression. Promoter-gusA reporter and reverse-transcription polymerase chain reaction analyses revealed that HpaR1 positively and negatively affects the expression of HR and pathogenicity (hrp) genes in host plant and standard media, respectively. Constitutive expression of the key hrp regulator, hrpG, in the hpaRI mutant could bypass the requirement of HpaR1 for the induction of wild-type HR, suggesting that HpaR1 regulates the expression of hrp genes that encode the type III secretion system via hrpG.
机译:GntR家族是细菌中最丰富,分布最广泛的螺旋-转-螺旋转录调节子组之一。植物病原体Xanthomonas campestris pv基因组中的六个开放阅读框。预测樟脑编码GntR调节剂。分别对所有六个预测的GntR编码基因进行了诱变,并成功获得了其中五个的突变体。植物病害反应测定表明,一种产品属于YtrA亚科,被命名为HpaR1,与超敏反应(HR)和毒力有关。电泳迁移率迁移分析和体外转录分析表明,HpaR1可以通过与启动子序列结合来抑制其自身的转录水平,这表明HpaR1表达具有自调节反馈抑制机制。 Promoter-gusA报告基因和逆转录聚合酶链反应分析表明,HpaR1分别正面和负面影响宿主植物和标准培养基中HR的表达和致病性(hrp)基因。 hpaRI突变体中关键hrp调节剂hrpG的组成型表达可能绕过了HpaR1诱导野生型HR的要求,这表明HpaR1调节了通过hrpG编码III型分泌系统的hrp基因的表达。

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