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A comprehensive study of multiple mapping and feature selection for correction strategy in the analysis of small RNAs from SOLiD sequencing

机译:通过SOLiD测序分析小RNA的多重作图和特征选择以校正策略的综合研究

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High-throughput sequencing is a powerful tool for discovering and profiling microRNAs (miRNAs) to gain further insights into their biogenesis and function. Due to shorter size, short RNAs from deep sequencing dataset are prone to map to multiple loci with an equal number of mismatches, especially among multicopy miRNA precursors and homologous miRNA genes. Systematic analysis of SOLiD sequencing dataset showed that 37.94% short RNAs could simultaneously map to more than one miRNA precursor, and more short RNAs were found to have multiple genomic loci. Improper selection from candidate loci might lose some mapping information, influence miRNA expression profile or even mislead to identify novel miRNAs. A comprehensive study indicated several potential features for correction strategy: location and distribution of mismatches, quality values, expression profiles of multiple isomiRs (miRNA variants), miRNA* and moRs (miRNA-offset-RNAs) at candidate locus and in its flank sequence. Further studies should develop an approach to correct the widespread phenomenon of multiple mapping based on these features, and improve accuracy of profiling and discovering miRNAs.
机译:高通量测序是发现和分析microRNA(miRNA)的强大工具,可进一步了解其生物发生和功能。由于较短的大小,来自深度测序数据集的短RNA倾向于以相等的错配数定位到多个基因座,尤其是在多拷贝miRNA前体和同源miRNA基因之间。对SOLiD测序数据集的系统分析表明,有37.94%的短RNA可以同时定位到一个以上的miRNA前体,并且发现更多的短RNA具有多个基因组位点。从候选基因座选择不当可能会丢失一些定位信息,影响miRNA表达谱,甚至会误导鉴定新颖的miRNA。一项全面的研究表明了纠正策略的几个潜在特征:错配的位置和分布,质量值,候选基因座及其侧面序列中的多个isomiR(miRNA变体),miRNA *和moR(miRNA偏移RNA)的表达谱。进一步的研究应开发一种方法,以基于这些功能纠正广泛的多重作图现象,并提高分析和发现miRNA的准确性。

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