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Assessment of Gene Annotation Accuracy by Inferring Transcripts from RNA-Seq

机译:通过从RNA-SEQ推断转录物评估基因注释精度

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Next generation sequencing is quickly changing long standing paradigms of genomics in terms of what is feasible to accomplish within a "research life time" and what is supposed to remain beyond limits of reliable experimental analysis. Sequencing and mapping of a prokaryote transcriptome can provide experimental validation for computationally predicted genes annotated in a prokaryotic genome. In this study we use the transcriptome sequencing to assess the accuracy of the public annotation of genes in a genome of important pathogen Bacillus anthracis. We show that the transcriptome data confirm existence of a number of genes missing in the annotation Also, the transcriptome data indicate that pseudogenes, genes with frameshifts and in frame stop codons, do keep the transcriptional activity (while possessing a coding potential as well) and continue to present a challenge for accurate annotation.
机译:下一代测序在“研究寿命时间”中可以在“研究寿命期”中是可行的,并且应该保持超出可靠实验分析的限制,从而快速改变基因组学的长期矛盾。原核转录组的测序和映射可以提供用于在原核基因组中注释的计算预测基因的实验验证。在这项研究中,我们使用转录组测序来评估重要病原体杆菌基因组中基因的公众注释的准确性。我们表明转录组数据确认存在于注释中缺失的许多基因的存在,转录组数据表明,伪原,具有架构的基因和框架阻止密码子,确实保持转录活动(同时拥有编码潜力)和继续提出准确注释的挑战。

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