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Mass of genes rather than master genes underlie the genomic architecture of amphibian speciation

  • Christophe Dufresnes
  • , Alan Brelsford
  • , Daniel L. Jeffries
  • , Glib Mazepa
  • , Tomasz Suchan
  • , Daniele Canestrelli
  • , Alfredo Nicieza
  • , Luca Fumagalli
  • , Sylvain Dubey
  • , Iñigo Martínez-Solano
  • , Spartak N. Litvinchuk
  • , Miguel Vences
  • , Nicolas Perrin
  • , Pierre André Crochet

Research output: Contribution to journalReview articlepeer-review

85 Scopus citations

Abstract

The genetic architecture of speciation, i.e., how intrinsic genomic incompatibilities promote reproductive isolation (RI) between diverging lineages, is one of the best-kept secrets of evolution. To directly assess whether incompatibilities arise in a limited set of large-effect speciation genes, or in a multitude of loci, we examined the geographic and genomic landscapes of introgression across the hybrid zones of 41 pairs of frog and toad lineages in the Western Palearctic region. As the divergence between lineages increases, phylogeographic transitions progressively become narrower, and larger parts of the genome resist introgression. This suggests that anuran speciation proceeds through a gradual accumulation of multiple barrier loci scattered across the genome, which ultimately deplete hybrid fitness by intrinsic postzygotic isolation, with behavioral isolation being achieved only at later stages. Moreover, these loci were disproportionately sex linked in one group (Hyla) but not in others (Rana and Bufotes), implying that large X-effects are not necessarily a rule of speciation with undifferentiated sex chromosomes. The highly polygenic nature of RI and the lack of hemizygous X/Z chromosomes could explain why the speciation clock ticks slower in amphibians compared to other vertebrates. The clock-like dynamics of speciation combined with the analytical focus on hybrid zones offer perspectives for more standardized practices of species delimitation.

Original languageEnglish
Article numbere2103963118
JournalProceedings of the National Academy of Sciences of the United States of America
Volume118
Issue number36
DOIs
StatePublished - 7 Sep 2021
Externally publishedYes

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