4.3 Article

Phylogenomics of the Leaf-Footed Bug Subfamily Coreinae (Hemiptera: Coreidae)

期刊

INSECT SYSTEMATICS AND DIVERSITY
卷 4, 期 4, 页码 -

出版社

OXFORD UNIV PRESS INC
DOI: 10.1093/isd/ixaa009

关键词

phylogenomics; ultraconserved elements; Coreidae; Coreinae; target capture

资金

  1. Archbold Biological Station
  2. Kai Kai Farms
  3. Rotary Community Garden
  4. Food Forest of Coral Springs
  5. Florida Park Service and Division of Recreation and Parks [05051610, 09011720]
  6. NSF [DEB 0542864]
  7. Lee Kong Chian Natural History Museum fellowship [NP/RP17-012]
  8. Nation Science Foundation [OISE-1614015]
  9. University of Florida Research Abroad for Doctoral Students [01-000204-1]
  10. Society of the Study of Evolution Rosemary Grant Award
  11. Smithsonian Tropical Research Institute Short Term Fellowship
  12. Systematics, Evolution, and Biodiversity Endowment Award (Entomological Society of America)
  13. National Science Foundation [IOS-1553100]

向作者/读者索取更多资源

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 and summary 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.

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