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Annotation of selection strengths in viral genomes

机译:病毒基因组选择强度的注释

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Motivation: Viral genomes tend to code in overlapping reading frames to maximize informational content. This may result in atypical codon bias and particular evolutionary constraints. Due to the fast mutation rate of viruses, there is additional strong evidence for varying selection between intra- and intergenomic regions. The presence of multiple coding regions complicates the concept of Ka/Ks ratio, and thus begs for an alternative approach when investigating selection strengths. Building on the paper by McCauley and Hein, we develop a method for annotating a viral genome coding in overlapping reading frames. We introduce an evolutionary model capable of accounting for varying levels of selection along the genome, and incorporate it into our prior single sequence HMM methodology, extending it now to a phylogenetic HMM. Given an alignment of several homologous viruses to a reference sequence, we may thus achieve an annotation both of coding regions as well as selection strengths, allowing us to investigate different selection patterns and hypotheses.
机译:动机:病毒基因组倾向于在重叠的阅读框中进行编码,以最大限度地提高信息含量。这可能导致非典型的密码子偏倚和特定的进化限制。由于病毒的快速突变率,因此还有强有力的证据证明基因组内部和基因组区域之间的选择有所不同。多个编码区的存在使K a / K s 之比的概念复杂化,因此在研究选择强度时会寻求一种替代方法。在McCauley和Hein的论文的基础上,我们开发了一种在重叠阅读框中注释病毒基因组编码的方法。我们介绍了一种进化模型,该模型能够考虑沿基因组的不同选择水平,并将其整合到我们先前的单序列HMM方法中,现在将其扩展到系统发育HMM。给定几种同源病毒与参考序列的比对,我们可能因此获得编码区和选择强度的注释,从而使我们能够研究不同的选择模式和假设。

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