Volta

Both selection and drift drive the spatial pattern of adaptive genetic variation in a wild mammal

Unknown authors · 2022
hash_id: 214bf0c0b7f65538e596a30b8b02ee14b5c58efed292d7d5d1ea01db0d31b67d · DOI: 10.1093/evolut/qpac014

The major histocompatibility complex (MHC) has been intensively studied for the relative effects of different evolutionary forces in recent decades. Pathogen-mediated balancing selection is generally thought to explain the high polymorphism observed in MHC genes, but it is still unclear to what extent MHC diversity is shaped by selection relative to neutral drift. In this study, we genotyped MHC class II DRB genes and 15 neutral microsatellite loci across 26 geographic populations of European badgers (Meles meles) covering most of their geographic range. By comparing variation of microsatellite and diversity of MHC at different levels, we demonstrate that both balancing selection and drift have shaped the evolution of MHC genes. When only MHC allelic identity was investigated, the spatial pattern …

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