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Comparative study of de novo assembly and genome-guided assembly strategies for transcriptome reconstruction based on RNA-Seq

机译:从头组装和基因组指导的组装策略基于RNA-Seq的转录组重建的比较研究

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摘要

Transcriptome reconstruction is an important application of RNA-Seq, providing critical information for further analysis of transcriptome. Although RNA-Seq offers the potential to identify the whole picture of transcriptome, it still presents special challenges. To handle these difficulties and reconstruct transcriptome as completely as possible, current computational approaches mainly employ two strategies: de novo assembly and genome-guided assembly. In order to find the similarities and differences between them, we firstly chose five representative assemblers belonging to the two classes respectively, and then investigated and compared their algorithm features in theory and real performances in practice. We found that all the methods can be reduced to graph reduction problems, yet they have different conceptual and practical implementations, thus each assembly method has its specific advantages and disadvantages, performing worse than others in certain aspects while outperforming others in anther aspects at the same time. Finally we merged assemblies of the five assemblers and obtained a much better assembly. Additionally we evaluated an assembler using genome-guided de novo assembly approach, and achieved good performance. Based on these results, we suggest that to obtain a comprehensive set of recovered transcripts, it is better to use a combination of de novo assembly and genome-guided assembly.
机译:转录组重建是RNA-Seq的重要应用,可为进一步分析转录组提供关键信息。尽管RNA-Seq具有识别整个转录组图片的潜力,但仍然提出了特殊的挑战。为了处理这些困难并尽可能完整地重建转录组,当前的计算方法主要采用两种策略:从头组装和基因组引导组装。为了找到它们之间的异同,我们首先选择了分别属于这两个类的五个有代表性的汇编器,然后在理论上和实际性能上对它们的算法特征进行了研究和比较。我们发现,所有方法都可以归结为图形化还原问题,但是它们在概念和实际实现上都有不同,因此每种组装方法都有其特定的优缺点,在某些方面的性能比其他方法差,而在其他方面的性能却优于其他方法。时间。最后,我们合并了五个组装程序的程序集,并获得了更好的程序集。此外,我们使用基因组指导的从头组装方法评估了组装机,并获得了良好的性能。根据这些结果,我们建议要获得一套完整的回收转录本,最好使用从头组装和基因组引导组装的组合。

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