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Does co-transcriptional regulation of alternative splicing mediate plant stress responses?

机译:选择性剪接的共转录调控是否介导植物胁迫反应?

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Plants display exquisite control over gene expression to elicit appropriate responses under normal and stress conditions. Alternative splicing (AS) of pre-mRNAs, a process that generates two or more transcripts from multi-exon genes, adds another layer of regulation to fine-tune condition-specific gene expression in animals and plants. However, exactly how plants control splice isoform ratios and the timing of this regulation in response to environmental signals remains elusive. In mammals, recent evidence indicate that epigenetic and epitranscriptome changes, such as DNA methylation, chromatin modifications and RNA methylation, regulate RNA polymerase II processivity, co-transcriptional splicing, and stability and translation efficiency of splice isoforms. In plants, the role of epigenetic modifications in regulating transcription rate and mRNA abundance under stress is beginning to emerge. However, the mechanisms by which epigenetic and epitranscriptomic modifications regulate AS and translation efficiency require further research. Dynamic changes in the chromatin landscape in response to stress may provide a scaffold around which gene expression, AS and translation are orchestrated. Finally, we discuss CRISPR/Cas-based strategies for engineering chromatin architecture to manipulate AS patterns (or splice isoforms levels) to obtain insight into the epigenetic regulation of AS.
机译:植物显示出对基因表达的精确控制,以在正常和胁迫条件下引发适当的响应。前mRNA的选择性剪接(AS)是一种从多外显子基因生成两个或更多转录本的过程,它增加了另一层调节,以微调动植物中条件特异性基因的表达。但是,植物如何精确控制剪接同工型比率以及响应环境信号的调控时间仍然不清楚。在哺乳动物中,最近的证据表明表观遗传和表观转录组的变化,例如DNA甲基化,染色质修饰和RNA甲基化,可调节RNA聚合酶II的合成能力,共转录剪接以及剪接同工型的稳定性和翻译效率。在植物中,表观遗传修饰在调节胁迫下的转录速率和mRNA丰度中的作用开始显现。但是,表观遗传学和转录组修饰调控AS和翻译效率的机制需要进一步研究。响应压力,染色质景观的动态变化可能提供了一个支架,围绕该支架可以调控基因表达,AS和翻译。最后,我们讨论了基于CRISPR / Cas的策略来设计染色质结构来操纵AS模式(或剪接同工型水平),以了解AS的表观遗传调控。

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