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Reactive oxygen intermediates in plant-microbe interactions: Who is who in powdery mildew resistance?

机译:植物与微生物相互作用中的活性氧中间体:谁对白粉病具有抗性?

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Reactive oxygen intermediates (ROIs) such as hydrogen peroxide (H2O2) and the superoxide anion radical (O2 ·−) accumulate in many plants during attack by microbial pathogens. Despite a huge number of studies, the complete picture of the role of ROIs in the host–pathogen interaction is not yet fully understood. This situation is reflected by the controversially discussed question as to whether ROIs are key factors in the establishment and maintenance of either host cell inaccessibility or accessibility for fungal pathogens. On the one hand, ROIs have been implicated in signal transduction as well as in the execution of defence reactions such as cell wall strengthening and a rapid host cell death (hypersensitive reaction). On the other hand, ROIs accumulate in compatible interactions, and there are reports suggesting a function of ROIs in restricting the spread of leaf lesions and thus in suppressing cell death. Moreover, in situ analyses have demonstrated that different ROIs may trigger opposite effects in plants depending on their spatiotemporal distribution and subcellular concentrations. This demonstrates the need to determine the particular role of individual ROIs in distinct stages of pathogen development. The well-studied interaction of cereals with fungi from the genus Blumeria is an excellent model system in which signal transduction and defence reactions can be further elucidated in planta. This review article gives a synopsis of the role of ROI accumulation, with particular emphasis on the pathosystem Hordeum vulgare L.–Blumeria graminis.
机译:活性氧中间体(ROIs),例如过氧化氢(H2 O2 )和超氧阴离子自由基(O2 ·-)在微生物病原体侵袭期间积累在许多植物中。尽管进行了大量研究,但尚未完全了解ROI在宿主与病原体相互作用中的作用的完整情况。关于ROI是否是建立和维持宿主细胞不可及或真菌病原体可及性的关键因素,这一有争议的问题反映了这种情况。一方面,ROI已参与信号转导以及防御反应的执行,例如细胞壁强化和快速的宿主细胞死亡(超敏反应)。另一方面,ROI在兼容的相互作用中积累,并且有报道表明ROI在限制叶病变的扩散从而抑制细胞死亡中起作用。此外,原位分析表明,不同的ROI可能会根据植物的时空分布和亚细胞浓度而在植物中引发相反的作用。这表明需要确定各个ROI在病原体发育不同阶段的特殊作用。对谷物与鸡蛋花属真菌的相互作用进行了充分研究,是一个极好的模型系统,其中信号转导和防御反应可在植物中进一步阐明。这篇综述文章简要介绍了ROI积累的作用,特别着重于大麦的病理系统-鸡蛋花。

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