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Video Q&A: Non-coding RNAs and eukaryotic evolution - a personal view.视频问答:非编码RNA与真核生物进化——个人观点
BMC Biol. 2010 Jul 16;8:67. doi: 10.1186/1741-7007-8-67.
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DNA methylation mediated by a microRNA pathway.miRNA 通路介导的 DNA 甲基化。
Mol Cell. 2010 May 14;38(3):465-75. doi: 10.1016/j.molcel.2010.03.008. Epub 2010 Apr 8.
3
Rice MicroRNA effector complexes and targets.水稻 microRNA 效应物复合物及其靶标。
Plant Cell. 2009 Nov;21(11):3421-35. doi: 10.1105/tpc.109.070938. Epub 2009 Nov 10.
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Non-coding RNAs: regulators of disease.非编码 RNA:疾病的调控者。
J Pathol. 2010 Jan;220(2):126-39. doi: 10.1002/path.2638.
5
Genomic and transcriptional co-localization of protein-coding and long non-coding RNA pairs in the developing brain.发育中的大脑中蛋白质编码和长链非编码RNA对的基因组和转录共定位。
PLoS Genet. 2009 Aug;5(8):e1000617. doi: 10.1371/journal.pgen.1000617. Epub 2009 Aug 21.
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Evolution, biogenesis and function of promoter-associated RNAs.启动子相关RNA的进化、生物发生及功能
Cell Cycle. 2009 Aug;8(15):2332-8. doi: 10.4161/cc.8.15.9154. Epub 2009 Aug 2.
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Small RNAs derived from snoRNAs.源自小核仁RNA的小RNA。
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在水稻中进行小核仁 RNA 及其可能的中间大小非编码 RNA 的全局鉴定和分析。

A global identification and analysis of small nucleolar RNAs and possible intermediate-sized non-coding RNAs in Oryza sativa.

机构信息

Peking-Yale Joint Research Center for Plant Molecular Genetics and Agrobiotechnology, State Key Laboratory of Protein and Plant Gene Research, College of Life Sciences, Peking University, Beijing 100871, China.

出版信息

Mol Plant. 2013 May;6(3):830-46. doi: 10.1093/mp/sss087. Epub 2012 Sep 17.

DOI:10.1093/mp/sss087
PMID:22986792
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3716300/
Abstract

Accumulating evidence suggests that non-coding RNAs (ncRNAs) are both widespread and functionally important in many eukaryotic organisms. In this study, we employed a special size fractionation and cDNA library construction method followed by 454 deep sequencing to systematically profile rice intermediate-size ncRNAs. Our analysis resulted in the identification of 1349 ncRNAs in total, including 754 novel ncRNAs of an unknown functional category. Chromosome distribution of all identified ncRNAs showed no strand bias, and displayed a pattern similar to that observed in protein-coding genes with few chromosome dependencies. More than half of the ncRNAs were centered around the plus-strand of the 5' and 3' termini of the coding regions. The majority of the novel ncRNAs were rice specific, while 78% of the small nucleolar RNAs (snoRNAs) were conserved. Tandem duplication drove the expansion of over half of the snoRNA gene families. Furthermore, 90% of the snoRNA candidates were shown to produce small RNAs between 20-30 nt, 80% of which were associated with ARGONAUT proteins generally, and AGO1b in particular. Overall, our findings provide a comprehensive view of an intermediate-size non-coding transcriptome in a monocot species, which will serve as a useful platform for an in-depth analysis of ncRNA functions.

摘要

越来越多的证据表明,非编码 RNA(ncRNAs)在许多真核生物中广泛存在且具有重要的功能。在这项研究中,我们采用了一种特殊的大小分级和 cDNA 文库构建方法,然后进行 454 深度测序,系统地分析了水稻中等大小的 ncRNAs。我们的分析总共鉴定出 1349 个 ncRNAs,其中包括 754 个未知功能类别的新 ncRNAs。所有鉴定出的 ncRNAs 的染色体分布没有链偏好性,与观察到的蛋白质编码基因的模式相似,染色体依赖性较少。超过一半的 ncRNAs 集中在编码区 5'和 3'末端的正链上。大多数新的 ncRNAs 是水稻特有的,而 78%的小核仁 RNA(snoRNA)是保守的。串联重复驱动了超过一半 snoRNA 基因家族的扩张。此外,90%的 snoRNA 候选物产生 20-30nt 的小 RNA,其中 80%通常与 ARGONAUT 蛋白相关,特别是 AGO1b。总的来说,我们的研究结果提供了单子叶植物中中等大小非编码转录组的全面视图,这将为深入分析 ncRNA 功能提供一个有用的平台。