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首页> 外文期刊>Insect Systematics and Diversity >Phylogenomics of the Leaf-Footed Bug Subfamily Coreinae (Hemiptera: Coreidae)
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Phylogenomics of the Leaf-Footed Bug Subfamily Coreinae (Hemiptera: Coreidae)

机译:叶脚虫亚家族Coreinae的系统基因组(半翅目:Coreidae)

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摘要

Baits targeting invertebrate ultraconserved elements (UCEs) are becoming more common for phylogenetic studies. Recent studies have shown that invertebrate UCEs typically encode proteins—and thus, are functionally different from more conserved vertebrate UCEs—and can resolve deep divergences (e.g., superorder to family ranks). However, whether invertebrate UCE baits have the power to robustly resolve relationships at shallower phylogenetic scales has been generally limited to investigations within the Coleoptera and Hymenoptera; thus, there are many invertebrate UCE baits that remain to be tested at shallower levels (i.e., tribes and congeners). Here, we assessed the ability of a recently designed Hemiptera UCE bait set to reconstruct more recent phylogenetic relationships in the largest leaf-footed bug subfamily, the Coreinae (Hemiptera: Coreidae), using a taxon-rich sample representing 21 of the 32 coreine tribes. Many well-supported, novel relationships were congruent in maximum likelihood andsummary coalescent analyses. We also found evidence for the para- and polyphyly of several tribes and genera of Coreinae, as well as the subfamilies Coreinae and Meropachyinae. Our study, along with other recent UCE studies, provides evidence that UCEs can produce robust and novel phylogenetic hypotheses at various scales in invertebrates.
机译:靶向无脊椎动物超保守元件(UCE)的诱饵在系统发育研究中变得越来越普遍。最近的研究表明,无脊椎动物通常编码蛋白质(因此,在功能上与更保守的脊椎动物uces都不同),并且可以解决深度分歧(例如,超级阶段与家庭等级)。然而,无脊椎动物是否具有在较浅的系统发育尺度上稳健地解决关系的能力,通常仅限于鞘翅目和膜翅目内的研究。因此,有许多无脊椎动物的UCE诱饵在较浅的水平(即部落和同类物)中仍有待测试。在这里,我们评估了最近设计的半翅目诱饵设置的能力,可以使用代表32个Coreine Tribes中的21个样本来重建最大的叶子虫子虫(Hemiptera:coreidae)中最新的系统发育关系(Hemiptera:coreidae) 。许多有充分支持的新型关系在最大可能性和夏季结合分析中都是一致的。我们还发现了多个部落和Coreinae的属的阶段和多态的证据,以及coreinae和Meropachyinae的亚科。我们的研究以及其他最近的UCE研究提供了证据,表明UCE可以在无脊椎动物的各个尺度上产生强大而新颖的系统发育假设。

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