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Let there be light: Regulation of gene expression in plants

机译:放光:调节植物中的基因表达

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Gene expression regulation relies on a variety of molecular mechanisms affecting different steps of a messenger RNA (mRNA) life: transcription, processing, splicing, alternative splicing, transport, translation, storage and decay. Light induces massive reprogramming of gene expression in plants. Differences in alternative splicing patterns in response to environmental stimuli suggest that alternative splicing plays an important role in plant adaptation to changing life conditions. In a recent publication, our laboratories showed that light regulates alternative splicing of a subset of Arabidopsis genes encoding proteins involved in RNA processing by chloroplast retrograde signals. The light effect on alternative splicing is also observed in roots when the communication with the photosynthetic tissues is not interrupted, suggesting that a signaling molecule travels through the plant. These results point at alternative splicing regulation by retrograde signals as an important mechanism for plant adaptation to their environment.
机译:基因表达调控依赖于影响信使RNA(mRNA)生命不同步骤的多种分子机制:转录,加工,剪接,选择性剪接,运输,翻译,储存和衰变。光诱导植物中基因表达的大量重编程。响应环境刺激的替代剪接模式的差异表明,替代剪接在植物适应不断变化的生活条件方面起着重要作用。在最近的出版物中,我们的实验室表明光调节拟南芥基因子集的可变剪接,该子集编码叶绿体逆行信号参与RNA处理的蛋白质。当与光合组织的通讯不中断时,在根部也观察到了对选择性剪接的光影响,这表明信号分子在植物中传播。这些结果表明通过逆行信号进行的选择性剪接调节是植物适应其环境的重要机制。

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