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- W2157788272 endingPage "20122302" @default.
- W2157788272 startingPage "20122302" @default.
- W2157788272 abstract "The diverse Müllerian mimetic wing patterns of neotropical Heliconius (Nymphalidae) have been proposed to be not only aposematic signals to potential predators, but also intra- and interspecific recognition signals that allow the butterflies to maintain their specific identities, and which perhaps drive the process of speciation, as well. Adaptive features under differential selection that also serve as cues for assortative mating have been referred to as 'magic traits', which can drive ecological speciation. Such traits are expected to exhibit allelic differentiation between closely related species with ongoing gene flow, whereas unlinked neutral traits are expected to be homogenized to a greater degree by introgression. However, recent evidence suggests that interspecific hybridization among Heliconius butterflies may have resulted in adaptive introgression of these very same traits across species boundaries, and in the evolution of new species by homoploid hybrid speciation. The theory and data supporting various aspects of the apparent paradox of 'magic trait' introgression are reviewed, with emphasis on population genomic comparisons of Heliconius melpomene and its close relatives." @default.
- W2157788272 created "2016-06-24" @default.
- W2157788272 creator A5024238141 @default.
- W2157788272 date "2013-02-07" @default.
- W2157788272 modified "2023-09-26" @default.
- W2157788272 title "Introgression of wing pattern alleles and speciation via homoploid hybridization in <i>Heliconius</i> butterflies: a review of evidence from the genome" @default.
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- W2157788272 doi "https://doi.org/10.1098/rspb.2012.2302" @default.
- W2157788272 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3574301" @default.