4.5 Article

Genome-wide tests for introgression between cactophilic Drosophila implicate a role of inversions during speciation

期刊

EVOLUTION
卷 69, 期 5, 页码 1178-1190

出版社

OXFORD UNIV PRESS
DOI: 10.1111/evo.12650

关键词

Speciation with gene flow; inversions; divergence genomics; Drosophila mojavensis; Drosophila arizonae

资金

  1. National Environmental Research Council, UK [NE/I020288/1, NBAF659]
  2. MRC [MR/K001744/1, G0900740] Funding Source: UKRI
  3. NERC [NE/I020288/1, NBAF010003] Funding Source: UKRI
  4. Medical Research Council [G0900740, MR/K001744/1] Funding Source: researchfish
  5. Natural Environment Research Council [NE/I020288/1, NBAF010003] Funding Source: researchfish

向作者/读者索取更多资源

Models of speciation-with-gene-flow have shown that the reduction in recombination between alternative chromosome arrangements can facilitate the fixation of locally adaptive genes in the face of gene flow and contribute to speciation. However, it has proven frustratingly difficult to show empirically that inversions have reduced gene flow and arose during or shortly after the onset of species divergence rather than represent ancestral polymorphisms. Here, we present an analysis of whole genome data from a pair of cactophilic fruit flies, Drosophila mojavensis and D. arizonae, which are reproductively isolated in the wild and differ by several large inversions on three chromosomes. We found an increase in divergence at rearranged compared to colinear chromosomes. Using the density of divergent sites in short sequence blocks we fit a series of explicit models of species divergence in which gene flow is restricted to an initial period after divergence and may differ between colinear and rearranged parts of the genome. These analyses show that D. mojavensis and D. arizonae have experienced postdivergence gene flow that ceased around 270 KY ago and was significantly reduced in chromosomes with fixed inversions. Moreover, we show that these inversions most likely originated around the time of species divergence which is compatible with theoretical models that posit a role of inversions in speciation with gene flow.

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