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昼夜节律在植物主要代谢和信号通路中的作用

Role of Circadian Rhythms in Major Plant Metabolic and Signaling Pathways.

作者信息

Venkat Ajila, Muneer Sowbiya

机构信息

Horticulture and Molecular Physiology Lab, School of Agricultural Innovations and Advanced Learning, Vellore Institute of Technology, Vellore, India.

School of Biosciences and Technology, Vellore Institute of Technology, Vellore, India.

出版信息

Front Plant Sci. 2022 Apr 6;13:836244. doi: 10.3389/fpls.2022.836244. eCollection 2022.

Abstract

Plants require an endogenous regulatory network and mechanism to cope with diurnal environmental changes and compensate for their sessile nature. Plants use the circadian clock to anticipate diurnal changes. Circadian rhythm predicts a 24-h cycle with 16 h of light and 8 h of darkness in response to abiotic and biotic factors as well as the appropriate temperature. For a plant's fitness, proper growth, and development, these rhythms synchronize the diurnal photoperiodic changes. Input pathway, central oscillator, and output pathway are the three components that make up the endogenous clock. There are also transcriptional and translational feedback loops (TTFLs) in the clock, which are dependent on the results of gene expression. Several physiological processes, such as stress acclimatization, hormone signaling, morphogenesis, carbon metabolism, and defense response, are currently being investigated for their interactions with the circadian clock using phenotypic, genomic, and metabolic studies. This review examines the role of circadian rhythms in the regulation of plant metabolic pathways, such as photosynthesis and carbon metabolism, as well as developmental and degenerative processes, such as flowering and senescence. Furthermore, we summarized signaling pathways related to circadian rhythms, such as defense response and gene regulatory pathways.

摘要

植物需要一个内源性调控网络和机制来应对昼夜环境变化,并弥补其固着生长的特性。植物利用生物钟来预测昼夜变化。昼夜节律预测一个24小时的周期,其中包括16小时光照和8小时黑暗,以响应非生物和生物因素以及适宜的温度。对于植物的适应性、正常生长和发育而言,这些节律使昼夜光周期变化同步。输入途径、中央振荡器和输出途径是构成内源性生物钟的三个组成部分。生物钟中还存在转录和翻译反馈环(TTFLs),它们依赖于基因表达的结果。目前,正在通过表型、基因组和代谢研究,对诸如胁迫适应、激素信号传导、形态发生、碳代谢和防御反应等几个生理过程与生物钟的相互作用进行研究。本综述探讨了昼夜节律在调节植物代谢途径(如光合作用和碳代谢)以及发育和退化过程(如开花和衰老)中的作用。此外,我们总结了与昼夜节律相关的信号传导途径,如防御反应和基因调控途径。

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