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Cytonuclear discordance among Southeast Asian black rats ( Rattus rattus complex)

Marie Pagès; Eric Bazin; Maxime Galan; Yannick Chaval; Julien Claude; Vincent herbreteau; Johan Michaux; Sylvain Piry; Serge Morand; Jean‐François Cosson
Molecular Ecology · Vol. 22, Issue 4 · pp. 1019-1034 · 2013

Abstract

Black rats are major invasive vertebrate pests with severe ecological, economic and health impacts. Remarkably, their evolutionary history has received little attention, and there is no firm agreement on how many species should be recognized within the black rat complex. This species complex is native to I ndia and S outheast A sia. According to current taxonomic classification, there are three taxa living in sympatry in several parts of T hailand, C ambodia and L ao P eople's D emocratic R epublic, where this study was conducted: two accepted species ( Rattus tanezumi , Rattus sakeratensis ) and an additional mitochondrial lineage of unclear taxonomic status referred to here as ‘ Rattus R3’. We used extensive sampling, morphological data and diverse genetic markers differing in rates of evolution and parental inheritance (two mitochondrial DNA genes, one nuclear gene and eight microsatellite loci) to assess the reproductive isolation of these three taxa. Two close Asian relatives, Rattus argentiventer and Rattus exulans , were also included in the genetic analyses. Genetic analyses revealed discordance between the mitochondrial and nuclear data. Mitochondrial phylogeny studies identified three reciprocally monophyletic clades in the black rat complex. However, studies of the phylogeny of the nuclear exon interphotoreceptor retinoid‐binding protein gene and clustering and assignation analyses with eight microsatellites failed to separate R . tanezumi and R3. Morphometric analyses were consistent with nuclear data. The incongruence between mitochondrial and nuclear (and morphological) data rendered R . tanezumi /R3 paraphyletic for mitochondrial lineages with respect to R . sakeratensis . Various evolutionary processes, such as shared ancestral polymorphism and incomplete lineage sorting or hybridization with massive mitochondrial introgression between species, may account for this unusual genetic pattern in mammals.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2013-02-01
Publication Year2013
Volume22
Issue4
Pages1019-1034
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.12149
SubjectEcology & Organismal Biology

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
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