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Genomic features and regulatory roles of intermediate-sized non-coding RNAs in Arabidopsis. (Special Issue: Plant epigenetics.)

机译:拟南芥中型非编码RNA的基因组特征和调控作用。 (特刊:植物表观遗传学。)

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Recent advances in genome-wide techniques allowed the identification of thousands of non-coding RNAs with various sizes in eukaryotes, some of which have further been shown to serve important functions in many biological processes. However, in model plant Arabidopsis, novel intermediate-sized ncRNAs (im-ncRNAs) (50-300 nt) have very limited information. By using a modified isolation strategy combined with deep-sequencing technology, we identified 838 im-ncRNAs in Arabidopsis globally. More than half (58%) are new ncRNA species, mostly evolutionary divergent. Interestingly, annotated protein-coding genes with 5'-UTR-derived novel im-ncRNAs tend to be highly expressed. For intergenic im-ncRNAs, their average abundances were comparable to mRNAs in seedlings, but subsets exhibited significantly lower expression in senescing leaves. Further, intergenic im-ncRNAs were regulated by similar genetic and epigenetic mechanisms to those of protein-coding genes, and some showed developmentally regulated expression patterns. Large-scale reverse genetic screening showed that the down-regulation of a number of im-ncRNAs resulted in either obvious molecular changes or abnormal developmental phenotypes in vivo, indicating the functional importance of im-ncRNAs in plant growth and development. Together, our results demonstrate that novel Arabidopsis im-ncRNAs are developmentally regulated and functional components discovered in the transcriptome.
机译:全基因组技术的最新进展允许鉴定成千上万种真核生物中各种大小的非编码RNA,其中一些已被进一步证明在许多生物学过程中起着重要的作用。但是,在模型植物拟南芥中,新型中等大小的ncRNA(im-ncRNA)(50-300 nt)具有非常有限的信息。通过使用改良的分离策略与深度测序技术相结合,我们在全球拟南芥中鉴定了838个im-ncRNA。超过一半(58%)是​​新的ncRNA,主要是进化差异。有趣的是,带有5'-UTR衍生的新型im-ncRNA的带注释的蛋白质编码基因趋向于高表达。对于基因间的im-ncRNA,它们的平均丰度可与幼苗中的mRNA相提并论,但亚群在衰老叶片中表现出明显较低的表达。此外,基因间的im-ncRNA受与蛋白质编码基因相似的遗传和表观遗传机制调控,其中一些表现出发育调控的表达模式。大规模逆向遗传筛选显示,许多im-ncRNA的下调在体内导致明显的分子变化或异常的发育表型,表明im-ncRNA在植物生长和发育中的功能重要性。在一起,我们的结果表明,新型拟南芥im-ncRNAs是转录调控的发育调控和功能组件。

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