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The R-loop Atlas of Arabidopsis Development and Responses to Environmental Stimuli
The Plant Cell ( IF 10.0 ) Pub Date : 2020-02-19
Xu, W., Li, K., Li, S., Hou, Q., Zhang, Y., Liu, K., Sun, Q.

R-loops are a common chromatin feature with essential functions in multiple cellular processes and diseases. However, little is known about the dynamic patterns of R-loops in a given organism. Here, using our recently developed genome-wide R-loop profiling method, we generated a comprehensive atlas quantifying the R-loop patterns of Arabidopsis thaliana at 53 points during development and responses to environmental stimuli. The R-loop patterns were fairly stable in plants at the vegetative stage and in response to different light spectra and other environmental stimuli. Notably, the R-loops showed turnover during the plant lifecycle, with patterns switching between generations. Importantly, R-loop dynamics were not strongly associated with RNA abundance, indicating that the mechanisms regulating R-loop formation and RNA accumulation are independent. We also observed enrichments of R-loops in transcription factor-binding regions, suggesting that R-loops could function as potential cis transcriptional regulators. This study provides the first overview of R-loop dynamics in Arabidopsis during development and stress responses, highlights the unique dynamics of R-loops in the flowering plant Arabidopsis, and lays the groundwork for elucidating the functions of R-loops.



中文翻译:

拟南芥发育和对环境刺激反应的R环图谱

R环是常见的染色质特征,在多种细胞过程和疾病中具有必不可少的功能。然而,对于给定生物中R环的动态模式知之甚少。在这里,使用我们最近开发的全基因组R环分析方法,我们生成了一个完整的图集,量化了拟南芥在发育和对环境刺激的反应时在53点的R环模式。在营养阶段以及对不同光谱和其他环境刺激的响应中,R环模式在植物中相当稳定。值得注意的是,R环显示了植物生命周期中的周转率,并且模式在世代之间切换。重要的是,R环动力学与RNA丰度并没有强烈的关联,表明调节R环形成和RNA积累的机制是独立的。我们还观察到转录因子结合区域中R环的富集,这表明R环可以充当潜在的顺式转录调节因子。这项研究提供了拟南芥在发育和胁迫响应过程中R环动力学的第一篇综述,突出了开花植物拟南芥中R环的独特动力学,并为阐明R环的功能奠定了基础。

更新日期:2020-03-19
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