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Recovering the Tree-Like Trend of Evolution Despite Extensive Lateral Genetic Transfer:A Probabilistic Analysis

机译:恢复尽管横向遗传转移广泛的树状进化趋势:概率分析。

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Lateral gene transfer (LGT) is a common mechanism of non-vertical evolution where genetic material is transferred between two more or less distantly related organisms. It is particularly common in bacteria where it contributes to adaptive evolution with important medical implications. In evolutionary studies, LGT has been shown to create widespread discordance between gene trees as genomes become mosaics of gene histories. In particular, the Tree of Life has been questioned as an appropriate representation of bacterial evolutionary history. Nevertheless a common hypothesis is that prokaryotic evolution is primarily tree-like, but that the underlying trend is obscured by LGT. Extensive empirical work has sought to extract a common tree-like signal from conflicting gene trees. Here we give a probabilistic perspective on the problem of recovering the tree-like trend despite LGT. Under a model of randomly distributed LGT, we show that the species phylogeny can be reconstructed even in the presence of surprisingly many (almost linear number of) LGT events per gene tree. Our results, which are optimal up to logarithmic factors, are based on the analysis of a robust, computationally efficient reconstruction method and provides insight into the design of such methods. Finally we show that our results have implications for the discovery of highways of gene sharing.
机译:横向基因转移(LGT)是非垂直进化的常见机制,其中遗传物质在两个或多或少远距离相关的生物之间转移。它在细菌中特别常见,在细菌的适应性进化中起重要作用。在进化研究中,随着基因组成为基因历史的镶嵌图,LGT已显示出在基因树之间造成广泛的矛盾。特别是,生命之树被质疑为细菌进化史的适当代表。然而,一个普遍的假设是,原核生物进化主要是树状的,但是LGT掩盖了潜在的趋势。广泛的经验工作试图从冲突的基因树中提取出常见的树状信号。在此,尽管存在LGT,但我们对恢复树状趋势的问题给出了概率的观点。在随机分布的LGT模型下,我们显示,即使每个基因树存在惊人的许多(几乎线性数量)LGT事件,也可以重建物种系统发育。我们的结果是对数因子最佳的结果,基于对鲁棒,计算效率高的重建方法的分析,并为此类方法的设计提供了见识。最后,我们表明我们的结果对基因共享高速公路的发现具有启示意义。

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