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拟南芥 EARLY FLOWERING 3 独立于 evening complex 控制生物钟对温度的响应。

Arabidopsis EARLY FLOWERING 3 controls temperature responsiveness of the circadian clock independently of the evening complex.

机构信息

Institute of Agricultural and Nutritional Sciences, Martin Luther University Halle-Wittenberg, Betty-Heimann-Str. 5, D-06120, Halle (Saale), Germany.

出版信息

J Exp Bot. 2022 Jan 27;73(3):1049-1061. doi: 10.1093/jxb/erab473.

Abstract

Daily changes in light and temperature are major entrainment cues that enable the circadian clock to generate internal biological rhythms that are synchronized with the external environment. With the average global temperature predicted to keep increasing, the intricate light-temperature coordination that is necessary for clock functionality is expected to be seriously affected. Hence, understanding how temperature signals are perceived by the circadian clock has become an important issue. In Arabidopsis, the clock component EARLY FLOWERING 3 (ELF3) not only serves as a light Zeitnehmer, but also functions as a thermosensor participating in thermomorphogenesis. However, the role of ELF3 in temperature entrainment of the circadian clock is not fully understood. Here, we report that ELF3 is essential for delivering temperature input to the clock. We demonstrate that in the absence of ELF3, the oscillator is unable to respond to temperature changes, resulting in an impaired gating of thermoresponses. Consequently, clock-controlled physiological processes such as rhythmic growth and cotyledon movement were disturbed. Genetic analyses suggest that the evening complex is not required for ELF3-controlled thermoresponsiveness. Together, our results reveal that ELF3 is an essential Zeitnehmer for temperature sensing of the oscillator, and thereby for coordinating the rhythmic control of thermoresponsive physiological outputs.

摘要

光照和温度的日常变化是主要的授时线索,使生物钟能够产生与外部环境同步的内部生物节律。随着全球平均温度预计将持续上升,时钟功能所需的复杂的光-温度协调预计将受到严重影响。因此,了解温度信号如何被生物钟感知已成为一个重要问题。在拟南芥中,生物钟成分 EARLY FLOWERING 3(ELF3)不仅作为光授时器,还作为参与热形态发生的热传感器发挥作用。然而,ELF3 在生物钟的温度授时中的作用尚未完全阐明。在这里,我们报告 ELF3 是将温度输入传递给生物钟所必需的。我们证明,在缺乏 ELF3 的情况下,振荡器无法响应温度变化,导致对热反应的门控受损。因此,时钟控制的生理过程,如节律性生长和子叶运动受到干扰。遗传分析表明,ELF3 控制的热反应性不需要 Evening 复合物。总之,我们的结果表明,ELF3 是振荡器温度感应的必需授时器,从而协调对热反应性生理输出的节律控制。

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