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Genomic evidence for asymmetric introgression by sexual selection in the common wall lizard

Academic Article
Publication Date:
2018
abstract:
Strongly selected characters can be transferred from one lineage to another with limited genetic exchange, resulting in asymmetric introgression and a mosaic genome in the receiving population. However, systems are rarely sufficiently well studied to link the pattern of introgression to its underlying process. Male common wall lizards in western Italy exhibit exaggeration of a suite of sexually selected characters that make them outcompete males from a distantly related lineage that lack these characters. This results in asymmetric hybridization and adaptive introgression of the suite of characters following secondary contact. We developed genome-wide markers to infer the demographic history of gene flow between different genetic lineages, identify the spread of the sexually selected syndrome, and test the prediction that introgression should be asymmetric and heterogeneous across the genome. Our results show that secondary contact was accompanied by gene flow in both directions across most of the genome, but with approximately 3% of the genome showing highly asymmetric introgression in the predicted direction. Demographic simulations reveal that this asymmetric gene flow is more recent than the initial secondary contact, and the data suggest that the exaggerated male sexual characters originated within the Italian lineage and subsequently spread throughout this lineage before eventually reaching the contact zone. These results demonstrate that sexual selection can cause a suite of characters to spread throughout both closely and distantly related lineages with limited gene flow across the genome at large. This article is protected by copyright. All rights reserved.
Iris type:
1.1 Articolo in rivista
Keywords:
Podarcis muralis; asymmetric introgression; mosaic genome; sexual selection
List of contributors:
Yang, Weizhao; While, Geoffrey M; Laakkonen, Hanna; Sacchi, Roberto; Zuffi, Marco A L; Scali, Stefano; Salvi, Daniele; Uller, Tobias
Authors of the University:
SACCHI ROBERTO
Handle:
https://iris.unipv.it/handle/11571/1224612
Published in:
MOLECULAR ECOLOGY
Journal
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