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在植物适应寒冷过程中,表观遗传因子参与黄酮类化合物的积累。

Involvement of epigenetic factors in flavonoid accumulation during plant cold adaptation.

机构信息

Federal Scientific Center of the East Asia Terrestrial Biodiversity, Far Eastern Branch of the Russian Academy of Sciences, 159 Stoletija Str., Vladivostok, 690022, Russia; Institute of Automation and Control Processes, Far Eastern Branch of the Russian Academy of Sciences, 5 Radio Str., Vladivostok, 690041, Russia.

Federal Scientific Center of the East Asia Terrestrial Biodiversity, Far Eastern Branch of the Russian Academy of Sciences, 159 Stoletija Str., Vladivostok, 690022, Russia; Institute of Automation and Control Processes, Far Eastern Branch of the Russian Academy of Sciences, 5 Radio Str., Vladivostok, 690041, Russia.

出版信息

Plant Physiol Biochem. 2024 Nov;216:109096. doi: 10.1016/j.plaphy.2024.109096. Epub 2024 Sep 5.

Abstract

Plant responses to cold stress include either induction of flavonoid biosynthesis as part of defense responses or initially elevated levels of these substances to mitigate sudden temperature fluctuations. The role of chromatin modifying factors and, in general, epigenetic variability in these processes is not entirely clear. In this work, we review the literature to establish the relationship between flavonoids, cold and chromatin modifications. We demonstrate the relationship between cold acclimation and flavonoid accumulation, and then describe the cold adaptation signaling pathways and their relationship with chromatin modifying factors. Particular attention was paid to the cold signaling module OST1-HOS1-ICE1 and the novel function of the E3 ubiquitin protein ligase HOS1 (a protein involved in chromatin modification during cold stress) in flavonoid regulation.

摘要

植物对冷胁迫的反应包括诱导类黄酮生物合成作为防御反应的一部分,或者最初提高这些物质的水平以减轻突然的温度波动。染色质修饰因子的作用以及这些过程中的表观遗传变异性并不完全清楚。在这项工作中,我们综述了文献,以确定类黄酮、冷胁迫和染色质修饰之间的关系。我们证明了冷驯化和类黄酮积累之间的关系,然后描述了冷适应信号通路及其与染色质修饰因子的关系。特别关注冷信号模块 OST1-HOS1-ICE1 和 E3 泛素蛋白连接酶 HOS1(冷胁迫过程中参与染色质修饰的蛋白质)在类黄酮调节中的新功能。

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