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Inferring horizontal transfers in the presence of rearrangements by the minimum evolution criterion

机译:通过最小进化标准推断存在重排的水平转移

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Motivation: The evolution of viruses is very rapid and in addition to local point mutations (insertion, deletion, substitution) it also includes frequent recombinations, genome rearrangements and horizontal transfer of genetic materials (HGTS). Evolutionary analysis of viral sequences is therefore a complicated matter for two main reasons: First, due to HGTs and recombinations, the right model of evolution is a network and not a tree. Second, due to genome rearrangements, an alignment of the input sequences is not guaranteed. These facts encourage developing methods for inferring phylogenetic networks that do not require aligned sequences as input. Results: In this work, we present the first computational approach which deals with both genome rearrangements and horizontal gene transfers and does not require a multiple alignment as input. We formalize a new set of computational problems which involve analyzing such complex models of evolution. We investigate their computational complexity, and devise algorithms for solving them. Moreover, we demonstrate the viability of our methods on several synthetic datasets as well as four biological datasets.
机译:动机:病毒的进化非常迅速,除了局部突变(插入,缺失,取代)外,它还包括频繁的重组,基因组重排和遗传物质的水平转移(HGTS)。因此,病毒序列的进化分析是一件复杂的事情,主要有两个原因:首先,由于HGT和重组,正确的进化模型是网络而不是树。其次,由于基因组重排,不能保证输入序列的比对。这些事实鼓励开发用于推断不需要序列序列作为输入的系统进化网络的方法。结果:在这项工作中,我们提出了第一种计算方法,该方法既可以处理基因组重排又可以进行水平基因转移,并且不需要多重比对作为输入。我们形式化了一组新的计算问题,其中涉及分析这种复杂的演化模型。我们调查了它们的计算复杂度,并设计了解决它们的算法。此外,我们在几种合成数据集以及四个生物学数据集上证明了我们方法的可行性。

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