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HYPERSENSITIVE RESPONSE-LIKE LESIONS 1 Codes for AtPPT1 and Regulates Accumulation of ROS and Defense Against Bacterial Pathogen Pseudomonas syringae in Arabidopsis thaliana

机译:过敏反应样疾病1的代码用于AtPPT1调节拟南芥中ROS的积累和对细菌性病原体丁香假单胞菌的防御

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摘要

>Aims: Plants employ both basal and resistance gene (R gene)-mediated defenses in response to pathogens. Reactive oxygen species (ROS) are widely reported to play a central role in both basal and R gene-mediated defense; however, the nature of ROS has been less well established for basal defense. In addition, spatial distribution of redox moieties and mechanisms of plant responses during basal defense are poorly understood. We investigated redox signaling in Arabidopsis thaliana in response to virulent bacterial pathogen, focusing on the role of the mitochondria in balancing energy demands against generation of physiologically relevant ROS. >Results: Positional cloning of an Arabidopsis lesion mimic mutant identified a polyprenyl transferase involved in the biosynthesis of Coenzyme Q10 (CoQ), which leads to novel insights into physiological ROS levels and their role in basal resistance. Gain- and loss-of-function studies identified Coenzyme Q10 redox state to be a key determinant of ROS levels. These Coenzyme Q10 redox state-mediated ROS levels had a direct bearing on both response against pathogen and ability to thrive in high oxidative stress environments. >Innovation: We demonstrate that Coenzyme Q10 redox state generates an ROS threshold for a successful basal resistance response. Perturbation of the Coenzyme Q10 redox state has the potential to disrupt plant defense responses against bacterial pathogens. >Conclusions: Coenzyme Q10 redox state is a key regulator of Arabidopsis basal resistance against bacterial pathogens. Antioxid. Redox Signal. 22, 785–796.
机译:>目标:植物对病原体同时利用基础和抗性基因(R基因)介导的防御作用。广泛报道活性氧(ROS)在基础和R基因介导的防御中起着核心作用。但是,ROS的性质对于基础防御而言尚不完善。另外,对基础防御过程中氧化还原部分的空间分布和植物反应的机理了解甚少。我们调查了拟南芥对有毒细菌病原体的响应中的氧化还原信号传导,重点是线粒体在平衡能量需求与生理相关ROS产生的平衡中的作用。 >结果:拟南芥病原菌模拟突变体的位置克隆确定了参与异源辅酶Q10(CoQ)生物合成的聚异戊二烯基转移酶,从而对生理性ROS水平及其在基础抗性中的作用有了新的认识。功能获得和功能丧失研究确定辅酶Q10的氧化还原状态是​​ROS水平的关键决定因素。这些辅酶Q10氧化还原状态介导的ROS水平与针对病原体的反应以及在高氧化应激环境中壮成长的能力都有直接关系。 >创新:我们证明了辅酶Q10的氧化还原状态为成功的基础抗性反应产生了ROS阈值。辅酶Q10氧化还原状态的扰动可能会破坏植物对细菌病原体的防御反应。 >结论:辅酶Q10氧化还原状态是​​拟南芥对细菌病原体基础抗性的关键调节因子。抗氧化。氧化还原信号。 22,785–796。

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