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Reconstruction of Ancestral Genome Subject to Whole Genome Duplication, Speciation, Rearrangement and Loss

机译:祖先基因组的重建受全基因组复制,物种形成,重排和丢失的影响

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Whole genome duplication (WGD) is a rare evolutionary event that has played a dramatic role in the diversification of most eu-karyotic lineages. Given a set of species known to have evolved from a common ancestor through one or many rounds of WGD together with a set of genome rearrangements, and a phylogenetic tree for these species, the goal is to infer the pre-duplication ancestral genomes. We use a two step approach: (1) Compute a score for each possible ancestral adjacency at each internal node of the phylogeny; (2) Combine adjacencies to form ancestral chromosomes. We first apply our method on simulated datasets and show a high accuracy for adjacency prediction. We then infer the pre-duplicated ancestor of a set of 11 yeast species and compare it to a manually assembled ancestral genome obtained by Gordon et al. (2009).
机译:全基因组复制(WGD)是一种罕见的进化事件,在大多数真核生物谱系的多样化中发挥了重要作用。给定一组已知已从共同祖先进化到一轮或多轮WGD的物种,再加上一组基因组重排,以及这些物种的系统发育树,目标是推断复制前的祖先基因组。我们使用两步法:(1)计算系统发育的每个内部节点上每个可能祖先邻接的分数; (2)结合邻接形成祖染色体。我们首先将我们的方法应用于模拟数据集,并显示出邻接预测的高精度。然后,我们推断一组11种酵母菌种的预复制祖先,并将其与Gordon等人获得的人工组装的祖先基因组进行比较。 (2009)。

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