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首页> 外文期刊>Journal of general plant pathology >Expression of hrpG and activation of response regulator HrpG are controlled by distinct signal cascades in Ralstonia solanacearum
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Expression of hrpG and activation of response regulator HrpG are controlled by distinct signal cascades in Ralstonia solanacearum

机译:hrpG的表达和应答调节剂HrpG的激活受青枯雷尔氏菌中不同信号级联的控制

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The transcriptional regulator HrpB activates the entire hrp regulon in the plant pathogen Ralstonia solanacearum. Through a complex multigene regulatory cascade PrhA-PrhR/PrhI-PrhJ-HrpG, expression of hrpB is induced in a hrp-inducing, nutrient-poor medium and in response to contact between the bacterium and plant cell. In this study, we analyzed the expression levels of these regulatory genes and hrpB using lacZ reporter strains grown in three different conditions: in a nutrient-rich or nutrient-poor medium and co-cultivated with Arabidopsis thaliana seedlings. We found that prhA and prhIR were expressed constitutively. Expression of prhJ and hrpG was PrhA-dependent in all three conditions. Despite the high level of hrpG expression in all cases, hrpB was induced only when the bacteria were co-cultivated with A. thaliana seedlings or grown in nutrient-poor medium. A mutation in the predicted phosphorylation site of hrpG greatly reduced the function of HrpG. From these results, we conclude that the prhA-dependent regulatory cascade controls the expression of hrpG, and a new cascade, which is induced by a signal from plant cells, activates HrpG by phosphorylation. Only when both signal cascades are effective is full expression of hrpB induced. We speculate that the metabolic status of the bacteria in the nutrient-poor medium also contributes to the second cascade.
机译:转录调节因子HrpB激活植物病原体Ralstonia solanacearum中的整个hrp regulon。通过复杂的多基因调节级联PrhA-PrhR / PrhI-PrhJ-HrpG,可在诱导hrp的营养缺乏的培养基中,并响应细菌与植物细胞之间的接触,诱导hrpB的表达。在这项研究中,我们使用在三种不同条件下生长的lacZ报告株分析了这些调控基因和hrpB的表达水平:在营养丰富或营养贫乏的培养基中与拟南芥幼苗共同培养。我们发现prhA和prhIR组成型表达。在所有三个条件下,prhJ和hrpG的表达均依赖于PrhA。尽管在所有情况下hrpG的表达水平都很高,但是仅当细菌与拟南芥幼苗共同培养或在营养贫乏的培养基中生长时才诱导hrpB。 hrpG的预期磷酸化位点中的突变大大降低了HrpG的功能。从这些结果,我们得出结论,依赖prhA的调节级联控制hrpG的表达,而新的级联由植物细胞的信号诱导,通过磷酸化激活HrpG。仅当两个信号级联均有效时,才会诱导hrpB的完整表达。我们推测营养不足的培养基中细菌的代谢状态也有助于第二级联反应。

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