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拟南芥中生物钟关联基因 1 的转录本稳定性与生物钟的同步调节

CIRCADIAN CLOCK ASSOCIATED1 transcript stability and the entrainment of the circadian clock in Arabidopsis.

作者信息

Yakir Esther, Hilman Dror, Hassidim Miriam, Green Rachel M

机构信息

Department of Plant and Environmental Sciences, Institute for Life Sciences, Hebrew University, Givat Ram, Jerusalem 91904, Israel.

出版信息

Plant Physiol. 2007 Nov;145(3):925-32. doi: 10.1104/pp.107.103812. Epub 2007 Sep 14.

Abstract

The circadian clock is an endogenous mechanism that generates rhythms with an approximately 24-h period and enables plants to predict and adapt to daily and seasonal changes in their environment. These rhythms are generated by molecular oscillators that in Arabidopsis (Arabidopsis thaliana) have been shown to consist of interlocking feedback loops involving a number of elements. An important characteristic of circadian oscillators is that they can be entrained by daily environmental changes in light and temperature. Previous work has shown that one possible entrainment point for the Arabidopsis oscillator is the light-mediated regulation of expression of one of the oscillator genes, CIRCADIAN CLOCK ASSOCIATED1 (CCA1). In this article, we have used transgenic plants with constitutive CCA1 expression to show that light also regulates CCA1 transcript stability. Our experiments show that CCA1 messenger RNA is relatively stable in the dark and in far-red light but has a short half-life in red and blue light. Furthermore, using transgenic plants expressing chimeric CCA1 constructs, we demonstrate that the instability determinants in CCA1 transcripts are probably located in the coding region. We suggest that the combination of light regulation of CCA1 transcription and CCA1 messenger RNA degradation is important for ensuring that the Arabidopsis circadian oscillator is accurately entrained by environmental changes.

摘要

生物钟是一种内源性机制,它能产生约24小时周期的节律,使植物能够预测并适应其环境中的每日和季节性变化。这些节律由分子振荡器产生,在拟南芥中,这些振荡器已被证明由涉及多个元件的连锁反馈环组成。生物钟振荡器的一个重要特征是它们可以被光和温度的每日环境变化所校准。先前的研究表明,拟南芥振荡器的一个可能的校准点是光介导的振荡器基因之一昼夜节律相关1(CCA1)表达的调控。在本文中,我们使用了组成型表达CCA1的转基因植物来表明光也调节CCA1转录本的稳定性。我们的实验表明,CCA1信使核糖核酸在黑暗和远红光中相对稳定,但在红光和蓝光中半衰期较短。此外,使用表达嵌合CCA1构建体的转基因植物,我们证明CCA1转录本中的不稳定决定因素可能位于编码区。我们认为,CCA1转录的光调节和CCA1信使核糖核酸降解的结合对于确保拟南芥生物钟振荡器被环境变化准确校准很重要。

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