<p>The human parasitic fluke, <i>Schistosoma haematobium</i> hybridizes with the livestock parasite <i>S. bovis</i> in the laboratory, but the frequency of hybridization in nature is unclear. Here, we analyze 34.6 million single nucleotide variants in 162 samples from 18 African countries, revealing a sharp genetic discontinuity between northern and southern <i>S. haematobium</i>. We find no evidence for recent hybridization. Instead the data reveal admixture events that occurred 257–879 generations ago in northern <i>S. haematobium</i> populations. Fifteen introgressed <i>S. bovis</i> genes are approaching fixation in northern <i>S. haematobium</i> with four genes potentially driving adaptation. Further, we identify 19 regions that are resistant to introgression; these are enriched on the sex chromosomes. These results (i) suggest strong barriers to gene flow between these species, (ii) indicate that hybridization may be less common than currently envisaged, but (iii) reveal profound genomic consequences of rare interspecific hybridization between schistosomes of medical and veterinary importance.</p>

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Genomic data reveal a north-south split and introgression history of blood fluke populations across Africa

  • Roy N. Platt II,
  • Egie E. Enabulele,
  • Ehizogie Adeyemi,
  • Marian O. Agbugui,
  • Oluwaremilekun G. Ajakaye,
  • Ebube C. Amaechi,
  • Chika P. Ejikeugwu,
  • Christopher Igbeneghu,
  • Victor S. Njom,
  • Precious Dlamini,
  • Grace A. Arya,
  • Robbie Diaz,
  • Muriel Rabone,
  • Fiona Allan,
  • Bonnie Webster,
  • Aidan Emery,
  • David Rollinson,
  • Timothy J. C. Anderson

摘要

The human parasitic fluke, Schistosoma haematobium hybridizes with the livestock parasite S. bovis in the laboratory, but the frequency of hybridization in nature is unclear. Here, we analyze 34.6 million single nucleotide variants in 162 samples from 18 African countries, revealing a sharp genetic discontinuity between northern and southern S. haematobium. We find no evidence for recent hybridization. Instead the data reveal admixture events that occurred 257–879 generations ago in northern S. haematobium populations. Fifteen introgressed S. bovis genes are approaching fixation in northern S. haematobium with four genes potentially driving adaptation. Further, we identify 19 regions that are resistant to introgression; these are enriched on the sex chromosomes. These results (i) suggest strong barriers to gene flow between these species, (ii) indicate that hybridization may be less common than currently envisaged, but (iii) reveal profound genomic consequences of rare interspecific hybridization between schistosomes of medical and veterinary importance.