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Widespread horizontal genomic exchange does not erode species barriers among sympatric ducks

Kraus, Robert (författare)
Wageningen University & Research
Kerstens, Hindrik (författare)
Radboud University Nijmegen
van Hooft, Pim (författare)
Wageningen University & Research
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Megens, Hendrik-Jan (författare)
Wageningen University & Research
Elmberg, Johan (författare)
Kristianstad University
Tsvey, Arseny (författare)
Biological Station Rybachy of the Zoological institute, Kaliningrad,Biological Station Rybachy of the Zoological institute, Kaliningrad
Sartakov, Dmitry (författare)
Ecological Watch of Siberia, Omsk,Ecological Watch of Siberia, Omsk
Soloviev, Sergej (författare)
Omsk State University
Crooijmans, Richard (författare)
Wageningen University & Research
Groenen, Martien (författare)
Wageningen University & Research
Ydenberg, Ronald (författare)
Wageningen University & Research
Prins, Herbert (författare)
Wageningen University & Research
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 (creator_code:org_t)
BioMed Central Ltd. 2012
2012
Engelska.
Ingår i: BMC Evolutionary Biology. - : BioMed Central Ltd.. - 1471-2148. ; 12
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • BACKGROUND:The study of speciation and maintenance of species barriers is at the core of evolutionary biology. During speciation the genome of one population becomes separated from other populations of the same species, which may lead to genomic incompatibility with time. This separation is complete when no fertile offspring is produced from inter-population matings, which is the basis of the biological species concept. Birds, in particular ducks, are recognised as a challenging and illustrative group of higher vertebrates for speciation studies. There are many sympatric and ecologically similar duck species, among which fertile hybrids occur relatively frequently in nature, yet these species remain distinct.RESULTS:We show that the degree of shared single nucleotide polymorphisms (SNPs) between five species of dabbling ducks (genus Anas) is an order of magnitude higher than that previously reported between any pair of eukaryotic species with comparable evolutionary distances. We demonstrate that hybridisation has led to sustained exchange of genetic material between duck species on an evolutionary time scale without disintegrating species boundaries. Even though behavioural, genetic and ecological factors uphold species boundaries in ducks, we detect opposing forces allowing for viable interspecific hybrids, with long-term evolutionary implications. Based on the superspecies concept we here introduce the novel term "supra-population" to explain the persistence of SNPs identical by descent within the studied ducks despite their history as distinct species dating back millions of years.CONCLUSIONS:By reviewing evidence from speciation theory, palaeogeography and palaeontology we propose a fundamentally new model of speciation to accommodate our genetic findings in dabbling ducks. This model, we argue, may also shed light on longstanding unresolved general speciation and hybridisation patterns in higher organisms, e.g. in other bird groups with unusually high hybridisation rates. Observed parallels to horizontal gene transfer in bacteria facilitate the understanding of why ducks have been such an evolutionarily successful group of animals. There is large evolutionary potential in the ability to exchange genes among species and the resulting dramatic increase of effective population size to counter selective constraints.

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