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首页> 外文期刊>Journal of bacteriology >A complex network regulates expression of eps and other virulence genes of Pseudomonas solanacearum.
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A complex network regulates expression of eps and other virulence genes of Pseudomonas solanacearum.

机译:一个复杂的网络调节青枯假单胞菌的eps和其他毒力基因的表达。

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We have discovered an unusual and complex regulatory network used by the phytopathogen Pseudomonas solanacearum to control transcription of eps, which encodes for production of its primary virulence factor, the exopolysaccharide EPS I. The major modules of this network were shown to be three separate signal transduction systems: PhcA, a LysR-type transcriptional regulator, an dual two-component regulatory systems, VsrA/VsrD and VsrB/VsrC. Using lacZ fusions and RNA analysis, we found that both PhcA and VsrA/VsrD control transcription of another network component, xpsR, which in turn acts in conjunction with vsrB/vsrC to increase transcription of the eps promoter by > 25-fold. Moreover, gel shift DNA binding assays showed that PhcA specifically binds to the xpsR promoter region. Thus, the unique XpsR protein interconnects the three signal transduction systems, forming a network for convergent control of EPS I in simultaneous response to multiple environmental inputs. In addition, we demonstrate that each individual signaling system of the network also acts independently to divergently regulate other unique sets of virulence factors. The purpose of this complex network may be to allow this phytopathogen to both coordinately or independently regulate diverse virulence factors in order to cope with the dynamic situations and conditions encountered during interactions with plants.
机译:我们发现了植物病原体青枯假单胞菌用于控制eps转录的不寻常且复杂的调控网络,该网络编码其主要毒力因子胞外多糖EPS I的产生。该网络的主要模块显示为三个独立的信号转导系统:PhcA,LysR型转录调节子,双重双组分调节系统VsrA / VsrD和VsrB / VsrC。使用lacZ融合和RNA分析,我们发现PhcA和VsrA / VsrD都控制另一个网络组件xpsR的转录,而xpsR则与vsrB / vsrC共同起作用,以将eps启动子的转录增加> 25倍。此外,凝胶转移DNA结合测定法显示,PhcA与xpsR启动子区域特异性结合。因此,独特的XpsR蛋白将三个信号转导系统相互连接,形成一个网络,用于在同时响应多个环境输入的情况下对EPS I进行集中控制。此外,我们证明了网络的每个单独的信号系统也独立发挥作用,以发散地调节其他独特的毒力因子集。这个复杂网络的目的可能是使这种植物病原体能够协调或独立地调节多种毒力因子,以应对与植物相互作用过程中遇到的动态情况和条件。

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