首页> 外文期刊>Systematic Entomology >A deeper meaning for shallow-level phylogenomic studies: nested anchored hybrid enrichment offers great promise for resolving the tiger moth tree of life (Lepidoptera: Erebidae: Arctiinae)
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A deeper meaning for shallow-level phylogenomic studies: nested anchored hybrid enrichment offers great promise for resolving the tiger moth tree of life (Lepidoptera: Erebidae: Arctiinae)

机译:浅层浅层系统研究的更深层次的意义:嵌套锚定杂交浓缩为解决虎蛾(Lepidoptera:Erebidae:Arctiinae)提供了极大的承诺

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Anchored hybrid enrichment (AHE) has emerged as a powerful tool for uncovering the evolutionary relationships within many taxonomic groups. AHE probe sets have been developed for a variety of insect groups, though none have yet been shown to be capable of simultaneously resolving deep and very shallow (e.g., intraspecific) divergences. In this study, we present NOC1, a new AHE probe set (730 loci) for Lepidoptera specialized for noctuoids and assess its ability to deliver phylogenetic utility at all taxonomic levels. We test the NOC1 probe set with 142 individuals from 116 species sampled from all the major lineages of Arctiinae (Erebidae), one of the most diverse groups of noctuoids (>11 000 species) for which no well-resolved, strongly supported phylogenetic hypothesis exists. Compared to previous methods, we generally recover much higher branch support (BS), resulting in the most well-supported, well-resolved phylogeny of Arctiinae to date. At the most shallow-levels, NOC1 confidently resolves species-level and intraspecific relationships and potentially uncovers cryptic species diversity within the genus Hypoprepia. We also implement a 'sensitivity analysis' to explore different loci combinations and site sampling strategies to determine whether a reduced probe set can yield results similar to those of the full probe set. At both deep and shallow levels, only 50-175 of the 730 loci included in the complete NOC1 probe set were necessary to resolve most relationships with high confidence, though only when the more rapidly evolving sites within each locus are included. This demonstrates that AHE probe sets can be tailored to target fewer loci without a significant reduction in BS, allowing future studies to incorporate more taxa at a lower per-sample sequencing cost. NOC1 shows great promise for resolving long-standing taxonomic issues and evolutionary questions within noctuoid lineages, one of the most speciose superfamilies within Lepidoptera.
机译:锚定杂交浓缩(AHE)已成为一种强大的工具,用于在许多分类群中揭示进化关系。已经为各种昆虫组开发了AHE探测器,尽管没有尚未显示能够同时解决深层和非常浅(例如,有内处理)分解。在这项研究中,我们呈NOC1,一种新的AHE探针组(730个基因座),用于鳞翅目,专门用于NOCTUOIDS,并评估其在所有分类水平递送系统发育效用的能力。我们测试NOC1探针组,其中142个单独的物种从Arctiinae(Erebidae)中的所有主要谱系中取样,其中最多多样的昼夜因子(> 11 000种)之一,不存在良好,强烈支持的系统发育假设。与以前的方法相比,我们通常恢复更高的分支支持(BS),导致迄今为止北克氏阴酮的最良好的受支持,良好分辨的系统发育。在最浅的级别,NOC1自信地解决了物种级别和拆除关系,并且可能在血尿病属中发现隐秘物种多样性。我们还实现了“敏感性分析”以探索不同的基因座组合和站点采样策略,以确定还原探针集是否可以产生类似于完整探测器集的结果。在深层和浅水层面,完整的NOC1探测集中包含的730个基因座中只有50-175个,以解决大多数与高信任的关系,但只有在每个轨迹内的更快发展的位点时才。这表明AHE探针组可以定制以瞄准更少的基因座,而不会在BS中显着减少,允许未来的研究以较低的每个样本测序成本纳入更多的分类群。 NOC1对解决长时间的分类问题和Noctuid谱系中的进化问题的巨大概念表现出了巨大的承诺,其中鳞片内最具特种的超级美食之一。

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