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Exploring contradictory phylogenetic relationships in yeasts.

机译:探索酵母中相互矛盾的系统发生关系。

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Phylogenetic trees underlie our understanding of yeast evolution and are also proving instrumental in the development of a more robust yeast classification system based upon natural (i.e. evolutionary) relationships. In an effort to refine/improve taxonomic resolution, recent studies have focused on the use of multigene rather than single gene sequencing. Nevertheless, searches to determine 'the tree' remain problematic, as they can often overlook conflicts in the dataset. In such instances, phylogenetic networks such as neighbor-nets and consensus networks can provide a more useful and indeed more informative alternative means of analysis. In this study, we have used the latter two phylogenetic network techniques to reanalyze the multigene sequence dataset of Kurtzman & Robnett, which was used to redefine the taxonomy of the family Saccharomycetaceae. Results from our analyses show that, in general, established clades are robust. However, they also reveal conflict between mitochondrial- and nuclear-encoded genes and indicate the existence of complex patterns of hybridization and introgression not detected in the original study. These patterns are discussed in relation to how they may impact upon the current classification of this group of yeasts.
机译:系统发育树是我们对酵母进化的理解的基础,也被证明有助于开发基于自然(即进化)关系的更强大的酵母分类系统。为了改进/提高分类学分辨率,最近的研究集中在使用多基因而不是单基因测序上。但是,确定“树”的搜索仍然存在问题,因为它们通常会忽略数据集中的冲突。在这种情况下,系统发育网络(例如邻居网络和共识网络)可以提供更有用,甚至更多信息的替代分析方法。在这项研究中,我们使用了后两种系统进化网络技术来重新分析Kurtzman&Robnett的多基因序列数据集,该数据集用于重新定义酿酒科的分类。我们的分析结果表明,一般而言,成熟的进化枝很健壮。但是,它们还揭示了线粒体编码基因和核编码基因之间的冲突,并表明存在原始研究中未发现的复杂的杂交和渗入模式。讨论了这些模式对它们可能如何影响当前这组酵母的分类。

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