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Persistent Gene Flow Suggests an Absence of Reproductive Isolation in an African Antelope Speciation Model

  • Xi Wang
  • , Casper Emil Tingskov Pedersen
  • , Georgios Athanasiadis
  • , Genís Garcia-Erill
  • , Kristian Hanghøj
  • , Laura D. Bertola
  • , Malthe Sebro Rasmussen
  • , Mikkel Schubert
  • , Xiaodong Liu
  • , Zilong Li
  • , Long Lin
  • , Renzo F. Balboa
  • , Emil Jørsboe
  • , Casia Nursyifa
  • , Shanlin Liu
  • , Vincent Muwanika
  • , Charles Masembe
  • , Lei Chen
  • , Wen Wang
  • , Ida Moltke
  • Hans R. Siegismund, Anders Albrechtsen, Rasmus Heller
  • University of Copenhagen
  • University of Barcelona
  • University of Oxford
  • China Agricultural University
  • Makerere University
  • Northwestern Polytechnical University Xian

科研成果: 期刊稿件文章同行评审

4 引用 (Scopus)

摘要

African antelope diversity is a globally unique vestige of a much richer world-wide Pleistocene megafauna. Despite this, the evolutionary processes leading to the prolific radiation of African antelopes are not well understood. Here, we sequenced 145 whole genomes from both subspecies of the waterbuck (Kobus ellipsiprymnus), an African antelope believed to be in the process of speciation. We investigated genetic structure and population divergence and found evidence of a mid-Pleistocene separation on either side of the eastern Great Rift Valley, consistent with vicariance caused by a rain shadow along the so-called "Kingdon's Line."However, we also found pervasive evidence of both recent and widespread historical gene flow across the Rift Valley barrier. By inferring the genome-wide landscape of variation among subspecies, we found 14 genomic regions of elevated differentiation, including a locus that may be related to each subspecies' distinctive coat pigmentation pattern. We investigated these regions as candidate speciation islands. However, we observed no significant reduction in gene flow in these regions, nor any indications of selection against hybrids. Altogether, these results suggest a pattern whereby climatically driven vicariance is the most important process driving the African antelope radiation and suggest that reproductive isolation may not set in until very late in the divergence process. This has a significant impact on taxonomic inference, as many taxa will be in a gray area of ambiguous systematic status, possibly explaining why it has been hard to achieve consensus regarding the species status of many African antelopes. Our analyses demonstrate how population genetics based on low-depth whole genome sequencing can provide new insights that can help resolve how far lineages have gone along the path to speciation.

源语言英语
页(从-至)979-994
页数16
期刊Systematic Biology
73
6
DOI
出版状态已出版 - 1 11月 2024

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