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首页> 外文期刊>Scientific reports. >Genome-wide identification of endogenous RNA-directed DNA methylation loci associated with abundant 21-nucleotide siRNAs in Arabidopsis
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Genome-wide identification of endogenous RNA-directed DNA methylation loci associated with abundant 21-nucleotide siRNAs in Arabidopsis

机译:基因组 - 与拟南芥中丰富的21核苷酸siRNA相关的内源性RNA定向的DNA甲基化基因座的基因组鉴定

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In Arabidopsis, the 24-nucleotide (nt) small interfering RNAs (siRNAs) mediates RNA-directed DNA methylation (RdDM) and transcriptional gene silencing (TGS) of transposable elements (TEs). In the present study, we examined genome-wide changes in DNA methylation and siRNA accumulation in Arabidopsis induced by expression of the Cucumber mosaic virus silencing suppressor protein 2b known to directly bind to both the 21/24-nt siRNAs as well as their associated Argonaute proteins. We demonstrated a genome-wide reduction of CHH and CHG methylation in the 2b-transgenic plants. We found that 2b suppressed RdDM not only at the previously annotated loci directed by 24-nt siRNAs but also a new set of loci associated with 21/22-nt siRNAs. Further analysis showed that the reduced methylation of TEs and coding genes targeted by 21/22-nt siRNAs was associated with sequestration of the duplex siRNAs by the 2b protein but not with changes in either siRNA production or transcription. Notably, we detected both the deletion and/or the transposition of multicopy TEs associated with 2b-induced hypomethylation, suggesting potential TE reactivation. We propose that the silencing of many TEs in Arabidopsis is controlled by the 24- and 21-nt endogenous siRNAs analogous to Drosophila TE silencing by PIWI-interacting RNAs and siRNAs.
机译:在拟南芥中,24核苷酸(NT)小干扰RNA(siRNA)介导转移元素(TES)的RNA定向的DNA甲基化(RDDM)和转录基因沉默(TGS)。在本研究中,我们检查了通过表达已知的黄瓜芥末病毒沉默蛋白2b和其相关的Argonaute的黄瓜马赛克病毒沉积抑制蛋白2b诱导的拟南芥中DNA甲基化和siRNA积累的基因组变化和siRNA积累。蛋白质。在2B-转基因植物中,我们证明了CHH和CHG甲基化的基因组减少。我们发现,2B抑制了RDDM,不仅是由24-NT SiRNA指示的先前注释的基因座,还抑制了与21/22-NT SiRNA相关联的新的基因座。进一步的分析表明,由21/22-NT siRNA靶向的TES和编码基因的降低与双链体蛋白质的封存相关,但不随SiRNA生产或转录的变化。值得注意的是,我们检测到与2B诱导的低甲基化相关的多拷贝TE的缺失和/或转置,表明潜在的TE再活化。我们提出拟南芥中许多TES的沉默由24-和21-NT内源性SIRNA控制,所述24-12nt内源性siRNA由PIWI相互作用的RNA和SIRNAS沉默。

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