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NPR1 and Redox Rhythm: Connections between Circadian Clock and Plant Immunity

机译:NPR1和氧化还原节奏:生物钟与植物免疫力之间的联系

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摘要

The circadian clock in plants synchronizes biological processes that display cyclic 24-h oscillation based on metabolic and physiological reactions. This clock is a precise timekeeping system, that helps anticipate diurnal changes; e.g., expression levels of clock-related genes move in synchrony with changes in pathogen infection and help prepare appropriate defense responses in advance. Salicylic acid (SA) is a plant hormone and immune signal involved in systemic acquired resistance (SAR)-mediated defense responses. SA signaling induces cellular redox changes, and degradation and rhythmic nuclear translocation of the non-expresser of PR genes 1 (NPR1) protein. Recent studies demonstrate the ability of the circadian clock to predict various potential attackers, and of redox signaling to determine appropriate defense against pathogen infection. Interaction of the circadian clock with redox rhythm promotes the balance between immunity and growth. We review here a variety of recent evidence for the intricate relationship between circadian clock and plant immune response, with a focus on the roles of redox rhythm and NPR1 in the circadian clock and plant immunity.
机译:植物中的生物钟可以根据代谢和生理反应来同步显示24小时循环振荡的生物过程。这个时钟是一个精确的计时系统,可以帮助预测日变化;例如,时钟相关基因的表达水平与病原体感染的变化同步移动,并有助于提前准备适当的防御反应。水杨酸(SA)是一种植物激素和免疫信号,参与系统获得性抗性(SAR)介导的防御反应。 SA信号传导诱导细胞氧化还原变化,以及PR基因1(NPR1)蛋白非表达蛋白的降解和节律性核易位。最近的研究证明了生物钟预测各种潜在攻击者的能力,以及氧化还原信号确定针对病原体感染的适当防御能力。昼夜节律时钟与氧化还原节奏的相互作用促进了免疫力和生长之间的平衡。我们在这里回顾了昼夜节律与植物免疫反应之间复杂关系的各种最新证据,重点是氧化还原节律和NPR1在昼夜节律与植物免疫中的作用。

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