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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Phylogenomic incongruence, hypothesis testing, and taxonomic sampling: The monophyly of characiform fishes
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Phylogenomic incongruence, hypothesis testing, and taxonomic sampling: The monophyly of characiform fishes

机译:系统核发生物的不一致,假设检测和分类法抽样:Characiform鱼的一定程度

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摘要

Phylogenomic studies using genome-wide datasets are quickly becoming the state of the art for systematics and comparative studies, but in many cases, they result in strongly supported incongruent results. The extent to which this conflict is real depends on different sources of error potentially affecting big datasets (assembly, stochastic, and systematic error). Here, we apply a recently developed methodology (GGI or gene genealogy interrogation) and data curation to new and published datasets with more than 1000 exons, 500 ultraconserved element (UCE) loci, and transcriptomic sequences that support incongruent hypotheses. The contentious non-monophyly of the order Characiformes proposed by two studies is shown to be a spurious outcome induced by sample contamination in the transcriptomic dataset and an ambiguous result due to poor taxonomic sampling in the UCE dataset. By exploring the effects of number of taxa and loci used for analysis, we show that the power of GGI to discriminate among competing hypotheses is diminished by limited taxonomic sampling, but not equally sensitive to gene sampling. Taken together, our results reinforce the notion that merely increasing the number of genetic loci for a few representative taxa is not a robust strategy to advance phylogenetic knowledge of recalcitrant groups. We leverage the expanded exon capture dataset generated here for Characiformes (206 species in 23 out of 24 families) to produce a comprehensive phylogeny and a revised classification of the order.
机译:使用基因组数据集的系统孕组学研究迅速成为系统性和比较研究的领域,但在许多情况下,它们导致强烈支持的不一致结果。这种冲突是真实的程度取决于可能影响大数据集的不同误差来源(程序集,随机和系统误差)。在这里,我们将最近开发的方法(GGI或基因系谱询问)和数据策策用于具有超过1000个外显子,500个超遗传元素(UCE)基因座的新的和公开的数据集,以及支持Incongruent假设的转录组序列。两项研究提出的令人争议的非单层令人作呕的Characiformes,被证明是由于在UCE数据集中的分类学采样不佳的分类差异,由转录组数据集中的样品污染和模糊结果诱导的杂散结果。通过探索用于分析的分类数和基因座数量的影响,我们表明GGI在竞争假设中区分的力量通过有限的分类样品采样减少,但对基因采样并不同样敏感。我们的结果加强了仅仅增加了几个代表性分类群的遗传基因座的数量的概念,这不是一种强大的策略,以提高醋孕组的系统发育知识。我们利用此处为Characiformes生成的扩展外显子捕获数据集(24个家庭中的23种中的206种),以产生综合的系统发育和订单的修订分类。

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