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NMFP: a non-negative matrix factorization based preselection method to increaseaccuracy of identifying mRNA isoforms from RNA-seq data

机译:NMFP:基于非负矩阵分解的预选方法,以增加来自RNA-SEQ数据的mRNA同种型的COMCURACY

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Background: The advent of next-generation RNA sequencing (RNA-seq) has greatly advanced transcriptomic studies, including system-wide identification and quantification of mRNA isoforms under various biological conditions. A number of computational methods have been developed to systematically identify mRNA isoforms in a high-throughput manner from RNA-seq data. However, a common drawback of these methods is that their identified mRNA isoforms contain a high percentage of false positives, especially for genes with complex splicing structures, e.g., many exons and exon junctions.Results: We have developed a preselection method called "Non-negative Matrix Factorization Preselection" (NMFP) which is designed to improve the accuracy of computational methods in identifying mRNA isoforms from RNA-seq data. We demonstrated through simulation and real data studies that NMFP can effectively shrink the search space of isoform candidates and increase the accuracy of two mainstream computational methods, Cufflinks and SLIDE, in their identification of mRNA isoforms.Conclusion: NMFP is a useful tool to preselect mRNA isoform candidates for downstream isoform discovery methods. It can greatly reduce the number of isoform candidates while maintaining a good coverage of unknown true isoforms. Adding NMFP as an upstreamstep, computational methods are expected to achieve better accuracy in identifying mRNA isoforms from RNA-seq data.
机译:背景:下一代RNA测序(RNA-SEQ)的出现具有极大的转录组研究,包括在各种生物条件下系统宽的鉴定和定量mRNA同种型。已经开发了许多计算方法以从RNA-SEQ数据系统地以高吞吐量鉴定mRNA同种型。然而,这些方法的常见缺点是它们所鉴定的mRNA同种型含有高百分比的误报,特别是对于具有复杂拼接结构的基因,例如许多外显子和外显子连接。结果:我们已经开发了一种称为“非负矩阵分解预选“(NMFP),其旨在提高从RNA-SEQ数据识别mRNA同种型的计算方法的准确性。我们通过模拟和实际数据研究证明了NMFP可以有效地缩小了同种型候选的搜索空间,并在其识别MRNA同种型中提高了两个主流计算方法,袖扣和载玻片的准确性。结论:NMFP是预选mRNA的有用工具用于下游同种型发现方法的同种型候选人。它可以大大减少同种型候选者的数量,同时保持未知真实同种型的良好覆盖范围。将NMFP添加为上游,预期计算方法在识别来自RNA-SEQ数据的mRNA同种型时,可以获得更好的准确性。

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