【2h】

Dealing with incongruence in phylogenomic analyses

机译:处理系统发育分析中的不一致

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摘要

Incongruence between gene trees is the main challenge faced by phylogeneticists in the genomic era. Incongruence can occur for artefactual reasons, when we fail to recover the correct gene trees, or for biological reasons, when true gene trees are actually distinct from each other, and from the species tree. Horizontal gene transfers (HGTs) between genomes are an important process of bacterial evolution resulting in a substantial amount of phylogenetic conflicts between gene trees. We argue that the (bacterial) species tree is still a meaningful scientific concept even in the case of HGTs, and that reconstructing it is still a valid goal. We tentatively assess the amount of phylogenetic incongruence caused by HGTs in bacteria by comparing bacterial datasets to a metazoan dataset in which transfers are presumably very scarce or absent. We review existing phylogenomic methods and their ability to return to the user, both the vertical (speciation/extinction history) and horizontal (gene transfers) phylogenetic signals.
机译:基因树之间的不一致是基因组学家在基因组时代面临的主要挑战。当我们无法恢复正确的基因树时,出于人工原因可能会发生不一致,或者由于生物学原因,当真正的基因树实际上彼此之间以及与物种树之间存在差异时,可能会发生不一致。基因组之间的水平基因转移(HGT)是细菌进化的重要过程,导致基因树之间发生大量的系统发育冲突。我们认为,即使对于HGT,(细菌)物种树仍然是一个有意义的科学概念,并且重建它仍然是一个有效的目标。我们通过将细菌数据集与后生动物数据集进行比较,初步评估了细菌中HGT引起的系统发育不一致的数量,后者的转移据认为非常稀少或缺乏。我们回顾了现有的系统生物学方法及其返回用户的能力,包括垂直(物种/灭绝历史)和水平(基因转移)系统发生信号。

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