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首页> 外文期刊>Applied Microbiology >GamR, the LysR-Type Galactose Metabolism Regulator, Regulates hrp Gene Expression via Transcriptional Activation of Two Key hrp Regulators, HrpG and HrpX, in Xanthomonas oryzae pv. oryzae
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GamR, the LysR-Type Galactose Metabolism Regulator, Regulates hrp Gene Expression via Transcriptional Activation of Two Key hrp Regulators, HrpG and HrpX, in Xanthomonas oryzae pv. oryzae

机译:GamE,LysR型半乳糖代谢调节剂,通过两个关键hrp调节剂Hrp和Hrp的转录激活,来调节水稻Xanthomonas oryzae pv中的hrp基因表达。水稻

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Xanthomonas oryzae pv. oryzae is the causal agent of bacterial leaf blight of rice. For the virulence of the bacterium, the hrp genes, encoding components of the type III secretion system, are indispensable. The expression of hrp genes is regulated by two key hrp regulators, HrpG and HrpX: HrpG regulates hrpX , and HrpX regulates other hrp genes. Several other regulators have been shown to be involved in the regulation of hrp genes. Here, we found that a LysR-type transcriptional regulator that we named GamR, encoded by XOO_2767 of X. oryzae pv. oryzae strain MAFF311018, positively regulated the transcription of both hrpG and hrpX , which are adjacent to each other but have opposite orientations, with an intergenic upstream region in common. In a gel electrophoresis mobility shift assay, GamR bound directly to the middle of the upstream region common to hrpG and hrpX . The loss of either GamR or its binding sites decreased hrpG and hrpX expression. Also, GamR bound to the upstream region of either a galactose metabolism-related gene ( XOO_2768 ) or a galactose metabolism-related operon ( XOO_2768 to XOO_2771 ) located next to gamR itself and positively regulated the genes. The deletion of the regulator gene resulted in less bacterial growth in a synthetic medium with galactose as a sole sugar source. Interestingly, induction of the galactose metabolism-related gene was dependent on galactose, while that of the hrp regulator genes was galactose independent. Our results indicate that the LysR-type transcriptional regulator that regulates the galactose metabolism-related gene(s) also acts in positive regulation of two key hrp regulators and the following hrp genes in X. oryzae pv. oryzae.IMPORTANCE The expression of hrp genes encoding components of the type III secretion system is essential for the virulence of many plant-pathogenic bacteria, including Xanthomonas oryzae pv. oryzae. It is specifically induced during infection. Research has revealed that in this bacterium, hrp gene expression is controlled by two key hrp regulators, HrpG and HrpX, along with several other regulators in the complex regulatory network, but the details remain unclear. Here, we found that a novel LysR-type transcriptional activator, named GamR, functions as an hrp regulator by directly activating the transcription of both hrpG and hrpX . Interestingly, GamR also regulates a galactose metabolism-related gene (or operon) in a galactose-dependent manner, while the regulation of hrpG and hrpX is independent of the sugar. Our finding of a novel hrp regulator that directly and simultaneously regulates two key hrp regulators provides new insights into an important and complex regulation system of X. oryzae pv. oryzae hrp genes.
机译:Xanthomonas oryzae pv。稻米是水稻细菌性叶枯病的病因。对于细菌的毒性而言,编码III型分泌系统成分的hrp基因是必不可少的。 hrp基因的表达受两个关键的hrp调控子HrpG和HrpX调控:HrpG调控hrpX,HrpX调控其他hrp基因。业已表明,其他几种调节剂也参与了hrp基因的调节。在这里,我们发现了一个名为GamR的LysR型转录调节子,该基因由米曲霉Xv_2767编码。米糠菌株MAFF311018,正调控彼此相邻但方向相反的hrpG和hrpX的转录,共同具有基因间的上游区域。在凝胶电泳迁移率变动分析中,GamR直接结合到hrpG和hrpX共有的上游区域的中间。 GamR或其结合位点的丢失降低了hrpG和hrpX表达。此外,GamR结合至与gamR本身相邻的半乳糖代谢相关基因(XOO_2768)或半乳糖代谢相关操纵子(XOO_2768至XOO_2771)的上游区域,并正向调节这些基因。调节基因的缺失导致在以半乳糖为唯一糖源的合成培养基中较少的细菌生长。有趣的是,半乳糖代谢相关基因的诱导依赖于半乳糖,而hrp调节基因的诱导则与半乳糖无关。我们的结果表明,调控半乳糖代谢相关基因的LysR型转录调控因子还可以在米曲霉XV中对两个关键的hrp调控因子和以下hrp基因进行正调控。重要信息编码III型分泌系统组分的hrp基因的表达对于许多植物致病细菌(包括米氏黄单胞菌pv)的毒力至关重要。水稻它是在感染过程中特异性诱导的。研究表明,在这种细菌中,hrp基因的表达受两个关键的hrp调节子HrpG和HrpX以及复杂调节网络中的其他几个调节子的控制,但细节尚不清楚。在这里,我们发现一种名为GamR的新型LysR型转录激活因子通过直接激活hrpG和hrpX的转录而充当hrp调节剂。有趣的是,GamR还以半乳糖依赖性方式调节与半乳糖代谢相关的基因(或操纵子),而hrpG和hrpX的调节则独立于糖。我们发现了一种新颖的可直接同时调节两个关键hrp调节器的hrp调节器,为对米曲霉PV的重要而复杂的调节系统提供了新的见解。稻hrp基因。

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