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REVEILLE2热敏剪接:拟南芥生物钟整合夜间温度信息的分子基础。

REVEILLE2 thermosensitive splicing: a molecular basis for the integration of nocturnal temperature information by the Arabidopsis circadian clock.

作者信息

James Allan B, Sharples Chantal, Laird Janet, Armstrong Emily May, Guo Wenbin, Tzioutziou Nikoleta, Zhang Runxuan, Brown John W S, Nimmo Hugh G, Jones Matthew A

机构信息

School of Molecular Biosciences, University of Glasgow, Glasgow, G12 8QQ, UK.

RNA Biology and Molecular Physiology, Faculty for Biology, Bielefeld University, Universitaetsstrasse 25, 33615, Bielefeld, Germany.

出版信息

New Phytol. 2024 Jan;241(1):283-297. doi: 10.1111/nph.19339. Epub 2023 Oct 28.

Abstract

Cold stress is one of the major environmental factors that limit growth and yield of plants. However, it is still not fully understood how plants account for daily temperature fluctuations, nor how these temperature changes are integrated with other regulatory systems such as the circadian clock. We demonstrate that REVEILLE2 undergoes alternative splicing after chilling that increases accumulation of a transcript isoform encoding a MYB-like transcription factor. We explore the biological function of REVEILLE2 in Arabidopsis thaliana using a combination of molecular genetics, transcriptomics, and physiology. Disruption of REVEILLE2 alternative splicing alters regulatory gene expression, impairs circadian timing, and improves photosynthetic capacity. Changes in nuclear gene expression are particularly apparent in the initial hours following chilling, with chloroplast gene expression subsequently upregulated. The response of REVEILLE2 to chilling extends our understanding of plants immediate response to cooling. We propose that the circadian component REVEILLE2 restricts plants responses to nocturnal reductions in temperature, thereby enabling appropriate responses to daily environmental changes.

摘要

冷胁迫是限制植物生长和产量的主要环境因素之一。然而,目前仍未完全了解植物如何应对每日温度波动,以及这些温度变化如何与其他调节系统(如生物钟)整合。我们证明,REVEILLE2在低温处理后会发生可变剪接,从而增加编码MYB样转录因子的转录本异构体的积累。我们结合分子遗传学、转录组学和生理学方法,探究了拟南芥中REVEILLE2的生物学功能。REVEILLE2可变剪接的破坏会改变调控基因的表达,损害昼夜节律,并提高光合能力。核基因表达的变化在低温处理后的最初几个小时尤为明显,随后叶绿体基因表达上调。REVEILLE2对低温的响应扩展了我们对植物对降温即时反应的理解。我们提出,生物钟成分REVEILLE2限制了植物对夜间温度降低的反应,从而使其能够对每日环境变化做出适当反应。

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