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Promoter-based identification of novel non-coding RNAs reveals the presence of dicistronic snoRNA-miRNA genes in Arabidopsis thaliana

机译:基于启动子的新型非编码RNA鉴定揭示了拟南芥中双顺反子snoRNA-miRNA基因的存在

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In the past few decades, non-coding RNAs (ncRNAs) have emerged as important regulators of gene expression in eukaryotes. Most studies of ncRNAs in plants have focused on the identification of silencing microRNAs (miRNAs) and small interfering RNAs (siRNAs). Another important family of ncRNAs that has been well characterized in plants is the small nucleolar RNAs (snoRNAs) and the related small Cajal body-specific RNAs (scaRNAs). Both target chemical modifications of ribosomal RNAs (rRNAs) and small nuclear RNAs (snRNAs). In plants, the snoRNA genes are organized in clusters, transcribed by RNA Pol II from a common promoter and subsequently processed into mature molecules. The promoter regions of snoRNA polycistronic genes in plants are highly enriched in two conserved cis-regulatory elements (CREs), Telo-box and Site II, which coordinate the expression of snoRNAs and ribosomal protein coding genes throughout the cell cycle. In order to identify novel ncRNA genes, we have used the snoRNA Telo-box/Site II motifs combination as a functional promoter indicator to screen the Arabidopsis genome. The predictions generated by this process were tested by detailed exploration of available RNA-Seq and expression data sets and experimental validation. As a result, we have identified several snoRNAs, scaRNAs and 'orphan' snoRNAs. We also show evidence for 16 novel ncRNAs that lack similarity to any reported RNA family. Finally, we have identified two dicistronic genes encoding precursors that are processed to mature snoRNA and miRNA molecules. We discuss the evolutionary consequences of this result in the context of a tight link between snoRNAs and miRNAs in eukaryotes. We present an alternative computational approach for non-coding RNA detection. Instead of depending on sequence or structure similarity in the whole genome screenings, we have explored the properties of promoter regions of well-characterized ncRNAs. Interestingly, besides expected ncRNAs predictions we were also able to recover single precursor arrangement for snoRNA-miRNA. Accompanied by analyses performed on rice sequences, we conclude that such arrangement might have interesting functional and evolutionary consequences and discuss this result in the context of a tight link between snoRNAs and miRNAs in eukaryotes.
机译:在过去的几十年中,非编码RNA(ncRNA)已经成为真核生物中基因表达的重要调节剂。植物中ncRNA的大多数研究都集中在沉默microRNA(miRNA)和小干扰RNA(siRNA)的鉴定上。已在植物中充分表征的ncRNA的另一个重要家族是小核仁RNA(snoRNA)和相关的小Cajal体特异性RNA(scaRNA)。两者都靶向核糖体RNA(rRNA)和小核RNA(snRNA)的化学修饰。在植物中,snoRNA基因以簇的形式组织,由共同启动子的RNA Pol II转录,然后加工成成熟分子。植物中snoRNA多顺反子基因的启动子区域富含两个保守的顺式调控元件(CRE),Telo-box和Site II,它们在整个细胞周期内协调snoRNA和核糖体蛋白编码基因的表达。为了鉴定新的ncRNA基因,我们已使用snoRNA Telo-box / Site II基序组合作为功能启动子指示剂来筛选拟南芥基因组。通过详细探索可用的RNA-Seq和表达数据集并进行实验验证,测试了此过程产生的预测。结果,我们确定了几种snoRNA,scaRNA和“孤儿” snoRNA。我们还显示了与任何报道的RNA家族缺乏相似性的16种新颖ncRNA的证据。最后,我们确定了两个双顺反子基因,它们编码被加工成成熟的snoRNA和miRNA分子的前体。我们在真核生物中的snoRNA和miRNA之间紧密联系的背景下讨论了该结果的进化后果。我们提出了一种非编码RNA检测的替代计算方法。而不是依赖于整个基因组筛选中的序列或结构相似性,我们已经探究了特征明确的ncRNAs启动子区域的特性。有趣的是,除了预期的ncRNA预测,我们还能够恢复snoRNA-miRNA的单个前体排列。通过对水稻序列进行分析,我们得出结论,这种排列可能具有有趣的功能和进化结果,并在真核生物中snoRNA和miRNA之间紧密联系的情况下讨论了这一结果。

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