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Working through polytomies: Auklets revisited

机译:通过多面体工作:Auklets的重新研究

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摘要

Polytomies, or phylogenetic "bushes", are the result of a series of internodes occurring in a short period of evolutionary time (which can result in data that do not contain enough information), or data that have too much homoplasy to resolve a bifurcating branching pattern. In this study we used the Aethia auklet polytomy to explore the effectiveness of different methods for resolving polytomies: mitochondrial DNA gene choice, number of individuals per species sampled, model of molecular evolution, and AFLP loci. We recovered a fully-resolved phylogeny using NADH dehydrogenase subunit 2 (ND2) sequence data under two different Bayesian models. We were able to corroborate this tree under one model with an expanded mtDNA dataset. Effectiveness of additional intraspecific sampling varied with node, and fully 20% of the subsampled datasets failed to return a congruent phylogeny when we sampled only one or two individuals per species. We did not recover a resolved phylogeny using AFLP data. Conflict in the AFLP dataset showed that nearly all possible relationships were supported at low levels of confidence, suggesting that either AFLPs are not useful at the genetic depth of the Aethia auklet radiation (7-9% divergent in the mtDNA ND2 gene), perhaps resulting in too much homoplasy, or that the Aethia auklets have experienced incomplete lineage sorting at many nuclear loci.
机译:多态性或系统发育的“融合”是在短时间的进化时间内发生一系列节点间的结果(这可能导致数据包含的信息不足),或同质性过多而无法解决分支分支的数据模式。在这项研究中,我们使用Aethia Auklet多层切开术来探索解决多层切开术的不同方法的有效性:线粒体DNA基因选择,每个物种的个体数量,分子进化模型和AFLP位点。我们在两个不同的贝叶斯模型下使用NADH脱氢酶亚基2(ND2)序列数据恢复了完全分辨的系统发育。我们能够在带有扩展mtDNA数据集的一个模型下证实这棵树。额外的种内采样的有效性随节点而异,当我们对每个物种仅采样一个或两个个体时,全部20%的子采样数据集无法返回完全一致的系统发育。我们没有使用AFLP数据恢复已解析的系统发育。 AFLP数据集中的冲突表明,几乎所有可能的关系都以低置信度得到支持,这表明这两种AFLP在Aethia auklet辐射的遗传深度(在mtDNA ND2基因中有7-9%的差异)均无用。可能是因为同质性过多,或者说Aethia小孔在许多核基因座上都经历了不完整的谱系分选。

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