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Association analysis of repetitive elements and R-loop formation across species

机译:跨物种重复元素和R环形成的关联分析

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Although recent studies have revealed the genome-wide distribution of R-loops, our understanding of R-loop formation is still limited. Genomes are known to have a large number of repetitive elements. Emerging evidence suggests that these sequences may play an important regulatory role. However, few studies have investigated the effect of repetitive elements on R-loop formation. We found different repetitive elements related to R-loop formation in various species. By controlling length and genomic distributions, we observed that satellite, long interspersed nuclear elements (LINEs), and DNA transposons were each specifically enriched for R-loops in humans, fruit flies, and Arabidopsis thaliana, respectively. R-loops also tended to arise in regions of low-complexity or simple repeats across species. We also found that the repetitive elements associated with R-loop formation differ according to developmental stage. For instance, LINEs and long terminal repeat retrotransposons (LTRs) are more likely to contain R-loops in embryos (fruit fly) and then turn out to be low-complexity and simple repeats in post-developmental S2 cells. Our results indicate that repetitive elements may have species-specific or development-specific regulatory effects on R-loop formation. This work advances our understanding of repetitive elements and R-loop biology.
机译:虽然最近的研究表明,我们对R环形成的基因组分布仍然有限。已知基因组具有大量的重复元件。新兴的证据表明这些序列可能发挥着重要的监管作用。然而,很少有研究研究了重复元素对R环形成的影响。我们发现与各种物种中的R环形成相关的不同重复元素。通过控制长度和基因组分布,我们观察到卫星,长时间的核心核元素(线)和DNA转座分别分别用于人类,果蝇和拟南芥的R环富集。 R-LOOPS也倾向于在物种的低复杂性或简单重复的区域中出现。我们还发现与R环形成相关的重复元件根据发育阶段而异。例如,线路和长终端重复转回转换器(LTRS)更有可能在胚胎(果蝇)中含有R圈,然后在开发后S2细胞中转出低复杂性和简单的重复。我们的结果表明,重复的元素可对R环形成具有特异性或显影特异性调节作用。这项工作推进了我们对重复元素和R环生物学的理解。

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