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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Singlet oxygen-mediated and EXECUTERdependent signalling and acclimation of Arabidopsis thaliana exposed to light stress
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Singlet oxygen-mediated and EXECUTERdependent signalling and acclimation of Arabidopsis thaliana exposed to light stress

机译:单线态氧介导且依赖EXECUTER的拟南芥暴露于光胁迫下的信号传导和驯化

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摘要

Plants respond to environmental changes by acclimation that activates defence mechanisms and enhances the plant's resistance against a subsequent more severe stress. Chloroplasts play an important role as a sensor of environmental stress factors that interfere with the photosynthetic electron transport and enhance the production of reactive oxygen species (ROS). One of these ROS, singlet oxygen (~1O_2), activates a signalling pathway within chloroplasts that depends on the two plastid-localized proteins EXECUTER 1 and 2. Moderate light stress induces acclimation protecting photosynthetic membranes against a subsequent more severe high light stress and at the same time activates ~1O_2- mediated and EXECUTER-dependent signalling. Pre-treatment of Arabidopsis seedlings with moderate light stress confers cross-protection against a virulent Pseudomonas syringae strain. While non-pre-acclimated seedlings are highly susceptible to the pathogen regardless of whether ~1O_2- and EXECUTERdependent signalling is active or not, pre-stressed acclimated seedlings without this signalling pathway lose part of their pathogen resistance. These results implicate ~1O_2- and EXECUTER-dependent signalling in inducing acclimation but suggest also a contribution by other yet unknown signalling pathways during this response of plants to light stress.
机译:植物通过适应气候变化来适应环境变化,这可以激活防御机制并增强植物对随后更严重胁迫的抵抗力。叶绿体作为环境压力因素的传感器发挥着重要作用,这些环境因素会干扰光合作用的电子运输并增强活性氧(ROS)的产生。这些ROS中的一个,单线态氧(〜1O_2)激活叶绿体中的信号传导途径,该途径取决于两个质体定位蛋白EXECUTER 1和2。适度的光胁迫诱导驯化,保护光合膜免受随后更严重的高光胁迫和同时激活〜1O_2介导且依赖EXECUTER的信号。用适度的光胁迫对拟南芥幼苗进行预处理,可以针对强毒的丁香假单胞菌菌株提供交叉保护。尽管未预适应的幼苗对病原体高度敏感,而不论〜1O_2-和EXECUTER依赖性信号传导是否活跃,但没有此信号通路的预应力适应的幼苗会失去部分病原体抗性。这些结果暗示了约1O_2和依赖EXECUTER的信号传导诱导驯化,但也暗示了在植物对光胁迫的响应过程中其他未知信号途径的贡献。

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