Literature DB >> 26576851

Phylogenomics Controlling for Base Compositional Bias Reveals a Single Origin of Eusociality in Corbiculate Bees.

Jonathan Romiguier1, Sydney A Cameron2, S Hollis Woodard3, Brielle J Fischman4, Laurent Keller1, Christophe J Praz5.   

Abstract

As increasingly large molecular data sets are collected for phylogenomics, the conflicting phylogenetic signal among gene trees poses challenges to resolve some difficult nodes of the Tree of Life. Among these nodes, the phylogenetic position of the honey bees (Apini) within the corbiculate bee group remains controversial, despite its considerable importance for understanding the emergence and maintenance of eusociality. Here, we show that this controversy stems in part from pervasive phylogenetic conflicts among GC-rich gene trees. GC-rich genes typically have a high nucleotidic heterogeneity among species, which can induce topological conflicts among gene trees. When retaining only the most GC-homogeneous genes or using a nonhomogeneous model of sequence evolution, our analyses reveal a monophyletic group of the three lineages with a eusocial lifestyle (honey bees, bumble bees, and stingless bees). These phylogenetic relationships strongly suggest a single origin of eusociality in the corbiculate bees, with no reversal to solitary living in this group. To accurately reconstruct other important evolutionary steps across the Tree of Life, we suggest removing GC-rich and GC-heterogeneous genes from large phylogenomic data sets. Interpreted as a consequence of genome-wide variations in recombination rates, this GC effect can affect all taxa featuring GC-biased gene conversion, which is common in eukaryotes.
© The Author 2015. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

Entities:  

Keywords:  GC-biased gene conversion; base composition; bees; eusociality; phylogenomics

Mesh:

Year:  2015        PMID: 26576851     DOI: 10.1093/molbev/msv258

Source DB:  PubMed          Journal:  Mol Biol Evol        ISSN: 0737-4038            Impact factor:   16.240


  19 in total

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Review 3.  Genetic accommodation and the role of ancestral plasticity in the evolution of insect eusociality.

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Journal:  J Exp Biol       Date:  2018-11-26       Impact factor: 3.312

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Journal:  Interface Focus       Date:  2017-02-06       Impact factor: 3.906

5.  Model Choice, Missing Data, and Taxon Sampling Impact Phylogenomic Inference of Deep Basidiomycota Relationships.

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Journal:  Syst Biol       Date:  2020-01-01       Impact factor: 15.683

6.  A Genome-Scale Investigation of How Sequence, Function, and Tree-Based Gene Properties Influence Phylogenetic Inference.

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Journal:  Genome Biol Evol       Date:  2016-09-02       Impact factor: 3.416

7.  The Nuclear and Mitochondrial Genomes of the Facultatively Eusocial Orchid Bee Euglossa dilemma.

Authors:  Philipp Brand; Nicholas Saleh; Hailin Pan; Cai Li; Karen M Kapheim; Santiago R Ramírez
Journal:  G3 (Bethesda)       Date:  2017-09-07       Impact factor: 3.154

8.  Segmentation of the subcuticular fat body in Apis mellifera females with different reproductive potentials.

Authors:  Aneta Strachecka; Krzysztof Olszewski; Karolina Kuszewska; Jacek Chobotow; Łukasz Wójcik; Jerzy Paleolog; Michał Woyciechowski
Journal:  Sci Rep       Date:  2021-07-06       Impact factor: 4.379

9.  The Evolutionary Dynamics of the Odorant Receptor Gene Family in Corbiculate Bees.

Authors:  Philipp Brand; Santiago R Ramírez
Journal:  Genome Biol Evol       Date:  2017-08-01       Impact factor: 3.416

10.  Dynamic microbiome evolution in social bees.

Authors:  Waldan K Kwong; Luis A Medina; Hauke Koch; Kong-Wah Sing; Eunice Jia Yu Soh; John S Ascher; Rodolfo Jaffé; Nancy A Moran
Journal:  Sci Adv       Date:  2017-03-29       Impact factor: 14.136

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