4.5 Letter

Divergence and introgression among the virilis group of Drosophila

Journal

EVOLUTION LETTERS
Volume 6, Issue 6, Pages 537-551

Publisher

OXFORD UNIV PRESS
DOI: 10.1002/evl3.301

Keywords

Divergence; gene flow; introgression; phylogenomics; reproductive isolation; speciation

Funding

  1. NERC (UK) award
  2. University of St Andrews studentship
  3. [NE/J020818/1]

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Gene flow plays a crucial role in speciation and evolution. In the virilis group of Drosophila, species show mixed genomes and conflicting phylogenetic relationships. Some genes are associated with adaptation and isolation. These findings enhance our understanding of gene flow and phylogenetics.
Speciation with gene flow is now widely regarded as common. However, the frequency of introgression between recently diverged species and the evolutionary consequences of gene flow are still poorly understood. The virilis group of Drosophila contains 12 species that are geographically widespread and show varying levels of prezygotic and postzygotic isolation. Here, we use de novo genome assemblies and whole-genome sequencing data to resolve phylogenetic relationships and describe patterns of introgression and divergence across the group. We suggest that the virilis group consists of three, rather than the traditional two, subgroups. Some genes undergoing rapid sequence divergence across the group were involved in chemical communication and desiccation tolerance, and may be related to the evolution of sexual isolation and adaptation. We found evidence of pervasive phylogenetic discordance caused by ancient introgression events between distant lineages within the group, and more recent gene flow between closely related species. When assessing patterns of genome-wide divergence in species pairs across the group, we found no consistent genomic evidence of a disproportionate role for the X chromosome as has been found in other systems. Our results show how ancient and recent introgressions confuse phylogenetic reconstruction, but may play an important role during early radiation of a group.

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