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The Tree versus the Forest: The Fungal Tree of Life and the Topological Diversity within the Yeast Phylome

机译:树与森林:酵母菌系统中的真菌生命树和拓扑多样性

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摘要

A recurrent topic in phylogenomics is the combination of various sequence alignments to reconstruct a tree that describes the evolutionary relationships within a group of species. However, such approach has been criticized for not being able to properly represent the topological diversity found among gene trees. To evaluate the representativeness of species trees based on concatenated alignments, we reconstruct several fungal species trees and compare them with the complete collection of phylogenies of genes encoded in the Saccharomyces cerevisiae genome. We found that, despite high levels of among-gene topological variation, the species trees do represent widely supported phylogenetic relationships. Most topological discrepancies between gene and species trees are concentrated in certain conflicting nodes. We propose to map such information on the species tree so that it accounts for the levels of congruence across the genome. We identified the lack of sufficient accuracy of current alignment and phylogenetic methods as an important source for the topological diversity encountered among gene trees. Finally, we discuss the implications of the high levels of topological variation for phylogeny-based orthology prediction strategies.
机译:系统基因组学中一个经常出现的话题是各种序列比对的组合,以重建一棵描述一组物种内进化关系的树。但是,这种方法因不能正确代表基因树之间的拓扑多样性而受到批评。为了评估基于级联比对的物种树的代表性,我们重建了几种真菌物种树,并将它们与酿酒酵母基因组中编码的基因的系统发育的完整集合进行比较。我们发现,尽管基因间拓扑变化水平很高,但物种树确实代表了广泛支持的系统发育关系。基因树和物种树之间的大多数拓扑差异都集中在某些冲突的节点上。我们建议将此类信息映射到物种树上,以便说明整个基因组的一致性水平。我们发现当前对齐和系统发育方法的不足是基因树之间遇到的拓扑多样性的重要来源。最后,我们讨论高拓扑变化对基于系统发育的正交预测策略的影响。

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