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Recent 辐射中的黄鹂属(属 Icterus)种系树推断:多个标记和方法揭示了北方黄鹂群的核质不符。

Species tree inference in a recent radiation of orioles (Genus Icterus): multiple markers and methods reveal cytonuclear discordance in the northern oriole group.

机构信息

Department of Biological Sciences, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

出版信息

Mol Phylogenet Evol. 2011 Nov;61(2):460-9. doi: 10.1016/j.ympev.2011.06.017. Epub 2011 Jun 26.

DOI:10.1016/j.ympev.2011.06.017
PMID:21729759
Abstract

Recent computational advances provide novel opportunities to infer species trees based on multiple independent loci. Thus, single gene trees no longer need suffice as proxies for species phylogenies. Several methods have been developed to deal with the challenges posed by incomplete and stochastic lineage sorting. In this study, we employed four Bayesian methods to infer the phylogeny of a clade of 11 recently diverged oriole species within the genus Icterus. We obtained well-resolved and mostly congruent phylogenies using a set of seven unlinked nuclear intron loci and sampling multiple individuals per species. Most notably, Bayesian concordance analysis generally agreed well with concatenation; the two methods agreed fully on eight of nine nodes. The coalescent-based method ∗BEAST further supported six of these eight nodes. The fourth method used, BEST, failed to converge despite exhaustive efforts to optimize the tree search. Overall, the results obtained by new species tree methods and concatenation generally corroborate our findings from previous analyses and data sets. However, we found striking disagreement between mitochondrial and nuclear DNA involving relationships within the northern oriole group. Our results highlight the danger of reliance on mtDNA alone for phylogenetic inference. We demonstrate that in spite of low variability and incomplete lineage sorting, multiple nuclear loci can produce largely congruent phylogenies based on multiple species tree methods, even for very closely-related species.

摘要

最近的计算进展为基于多个独立基因座推断物种树提供了新的机会。因此,单基因树不再需要作为物种系统发育的替代物。已经开发了几种方法来处理不完全和随机谱系分类所带来的挑战。在这项研究中,我们使用了四种贝叶斯方法来推断 11 个最近分化或莺属种的进化枝的系统发育。我们使用一组七个不相关的核内含子基因座和每个物种的多个个体来获得分辨率良好且大多一致的系统发育。最值得注意的是,贝叶斯一致分析通常与连锁一致;这两种方法在九个节点中的八个上完全一致。基于合并的方法 ∗BEAST 进一步支持了这八个节点中的六个。尽管我们努力优化树搜索,但第四个使用的方法 BEST 仍然无法收敛。总的来说,新的物种树方法和连锁分析的结果与我们之前的分析和数据集的结果基本一致。然而,我们发现线粒体和核 DNA 之间存在惊人的分歧,涉及到北方莺群内的关系。我们的结果强调了仅依赖 mtDNA 进行系统发育推断的危险。我们证明,尽管变异率低且谱系分类不完全,但多个核基因座可以通过多种物种树方法产生大致一致的系统发育,即使是对非常相关的物种也是如此。

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