Department of Biology, Cornell College, Mount Vernon, Iowa, United States of America.
African Natural History Research Trust, Leominster, Herefordshire, United Kingdom.
PLoS One. 2022 Oct 5;17(10):e0274292. doi: 10.1371/journal.pone.0274292. eCollection 2022.
The schizophoran superfamily Ephydroidea (Diptera: Cyclorrhapha) includes eight families, ranging from the well-known vinegar flies (Drosophilidae) and shore flies (Ephydridae), to several small, relatively unusual groups, the phylogenetic placement of which has been particularly challenging for systematists. An extraordinary diversity in life histories, feeding habits and morphology are a hallmark of fly biology, and the Ephydroidea are no exception. Extreme specialization can lead to "orphaned" taxa with no clear evidence for their phylogenetic position. To resolve relationships among a diverse sample of Ephydroidea, including the highly modified flies in the families Braulidae and Mormotomyiidae, we conducted phylogenomic sampling. Using exon capture from Anchored Hybrid Enrichment and transcriptomics to obtain 320 orthologous nuclear genes sampled for 32 species of Ephydroidea and 11 outgroups, we evaluate a new phylogenetic hypothesis for representatives of the superfamily. These data strongly support monophyly of Ephydroidea with Ephydridae as an early branching radiation and the placement of Mormotomyiidae as a family-level lineage sister to all remaining families. We confirm placement of Cryptochetidae as sister taxon to a large clade containing both Drosophilidae and Braulidae-the latter a family of honeybee ectoparasites. Our results reaffirm that sampling of both taxa and characters is critical in hyperdiverse clades and that these factors have a major influence on phylogenomic reconstruction of the history of the schizophoran fly radiation.
鞘翅目 Ephydroidea (双翅目:环裂亚目)包括 8 个科,从著名的果蝇科(Drosophilidae)和岸蝇科(Ephydridae)到几个较小的、相对不寻常的群体,这些群体的系统发育位置一直是系统发育学家特别具有挑战性的问题。生活史、摄食习性和形态的非凡多样性是蝇类生物学的标志, Ephydroidea 也不例外。极端的特化可能导致“孤儿”类群,其系统发育位置没有明确的证据。为了解决 Ephydroidea 多样化样本中的关系,包括 Braulidae 和 Mormotomyiidae 科中高度修饰的蝇类,我们进行了系统基因组采样。我们利用锚定杂交富集和转录组学进行外显子捕获,获得了 Ephydroidea 32 个物种和 11 个外群的 320 个同源核基因,评估了 Ephydroidea 超级家族代表的新系统发育假说。这些数据强烈支持 Ephydroidea 的单系性,Ephydridae 是一个早期分支辐射,Mormotomyiidae 作为一个科级谱系位于所有剩余科的姐妹位置。我们确认 Cryptochetidae 作为一个大支系的姊妹类群,该支系包含果蝇科和 Braulidae,后者是蜜蜂外寄生虫的一个科。我们的结果再次证实,在高度多样化的类群中,采样类群和特征是至关重要的,这些因素对环裂亚目蝇辐射历史的系统基因组重建有重大影响。