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首页> 外文期刊>Journal of bacteriology >OryR Is a LuxR-Family Protein Involved in Interkingdom Signaling between Pathogenic Xanthomonas oryzae pv. oryzae and Rice
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OryR Is a LuxR-Family Protein Involved in Interkingdom Signaling between Pathogenic Xanthomonas oryzae pv. oryzae and Rice

机译:OryR是一种LuxR家族蛋白,参与致病性黄单胞菌pv之间的相互间信号传导。米饭和米饭

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摘要

Xanthomonas oryzae pv. oryzae, the causal agent of bacterial leaf blight in rice, contains a regulator that is encoded in the genome, designated OryR, which belongs to the N-acyl homoserine lactone (AHL)-dependent quorum-sensing LuxR subfamily of proteins. However, we previously reported that X. oryzae pv. oryzae does not make AHLs and does not possess a LuxI-family AHL synthase and that the OryR protein is solubilized by a compound present in rice. In this study we obtained further evidence that OryR interacts with a rice signal molecule (RSM) and that the OryR concentration increases when rice is infected with X. oryzae pv. oryzae. We also describe three OryR target promoters which are regulated differently: (i) the neighboring proline iminopeptidase (pip) virulence gene, which is positively regulated by OryR in the presence of the RSM; (ii) the oryR promoter, which is negatively autoregulated independent of the RSM; and (iii) the 1,4-β-cellobiosidase cbsA gene, which is positively regulated by OryR independent of the RSM. We also found that the RSM for OryR is small, is not related to AHLs, and is not able to activate the broad-range AHL biosensor Agrobacterium tumefaciens NT1(pZLQR). Furthermore, OryR does not regulate production of the quorum-sensing diffusible signal factor present in the genus Xanthomonas. Therefore, OryR has unique features and is an important regulator involved in interkingdom communication between the host and the pathogen.
机译: Xanthomonas oryzae pv。水稻中细菌性叶枯病的病原体稻米含有一种在基因组中编码的调节剂,称为OryR,它属于 N -酰基高丝氨酸内酯(AHL)依赖性群体感应LuxR。蛋白质亚家族。但是,我们先前报告了 X。稻米稻米不产生AHL,也不具有LuxI家族的AHL合酶,并且OryR蛋白被存在于水稻中的化合物溶解。在这项研究中,我们获得了进一步的证据,即OryR与水稻信号分子(RSM)相互作用,并且当水稻感染 X时OryR的浓度会增加。稻米水稻我们还描述了三个OryR靶标启动子,它们受到不同的调节:(i)邻近的脯氨酸亚肽酶( pip )毒力基因,在RSM存在下被OryR阳性调节; (ii) oryR 启动子,其独立于RSM进行负自动调节; (iii)1,4-β-纤维二糖苷酶 cbsA 基因,该基因受OryR的独立于RSM的正调控。我们还发现OryR的RSM很小,与AHLs无关,并且不能激活宽范围的AHL生物传感器根癌农杆菌 NT1(pZLQR)。此外,OryR不能调节 Xanthomonas 属中的群体感应扩散信号因子的产生。因此,OryR具有独特的功能,并且是参与宿主与病原体之间交流的重要调控因子。

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