TY - JOUR
T1 - Selection against domestication alleles in introduced rabbit populations
AU - Andrade, Pedro
AU - Alves, Joel M.
AU - Pereira, Paulo
AU - Rubin, Carl-Johan
AU - Silva, Eugenio
AU - Sprehn, C. Grace
AU - Enbody, Erik
AU - Afonso, Sandra
AU - Faria, Rui
AU - Zhang, Yexin
AU - Bonino, Never
AU - Duckworth, Janine A.
AU - Garreau, Herve
AU - Letnic, Mike
AU - Strive, Tanja
AU - Thulin, Carl-Gustaf
AU - Queney, Guillaume
AU - Villafuerte, Rafael
AU - Jiggins, Francis M.
AU - Ferrand, Nuno
AU - Andersson, Leif
AU - Carneiro, Miguel
PY - 2024
Y1 - 2024
N2 - Humans have moved domestic animals around the globe for thousands of years. These have occasionally established feral populations in nature, often with devastating ecological consequences. To understand how natural selection shapes re-adaptation into the wild, we investigated one of the most successful colonizers in history, the European rabbit. By sequencing the genomes of 297 rabbits across three continents, we show that introduced populations exhibit a mixed wild-domestic ancestry. We show that alleles that increased in frequency during domestication were preferentially selected against in novel natural environments. Interestingly, causative mutations for common domestication traits sometimes segregate at considerable frequencies if associated with less drastic phenotypes (for example, coat colour dilution), whereas mutations that are probably strongly maladaptive in nature are absent. Whereas natural selection largely targeted different genomic regions in each introduced population, some of the strongest signals of parallelism overlap genes associated with neuronal or brain function. This limited parallelism is probably explained by extensive standing genetic variation resulting from domestication together with the complex mixed ancestry of introduced populations. Our findings shed light on the selective and molecular mechanisms that enable domestic animals to re-adapt to the wild and provide important insights for the mitigation and management of invasive populations.Analysis of 297 whole-genome sequences of six introduced European rabbit populations, domestic rabbits and wild rabbits from the native range shows wild and domestic ancestry in introduced rabbit populations and purging of alleles for domesticated traits when rabbits colonized novel natural environments.
AB - Humans have moved domestic animals around the globe for thousands of years. These have occasionally established feral populations in nature, often with devastating ecological consequences. To understand how natural selection shapes re-adaptation into the wild, we investigated one of the most successful colonizers in history, the European rabbit. By sequencing the genomes of 297 rabbits across three continents, we show that introduced populations exhibit a mixed wild-domestic ancestry. We show that alleles that increased in frequency during domestication were preferentially selected against in novel natural environments. Interestingly, causative mutations for common domestication traits sometimes segregate at considerable frequencies if associated with less drastic phenotypes (for example, coat colour dilution), whereas mutations that are probably strongly maladaptive in nature are absent. Whereas natural selection largely targeted different genomic regions in each introduced population, some of the strongest signals of parallelism overlap genes associated with neuronal or brain function. This limited parallelism is probably explained by extensive standing genetic variation resulting from domestication together with the complex mixed ancestry of introduced populations. Our findings shed light on the selective and molecular mechanisms that enable domestic animals to re-adapt to the wild and provide important insights for the mitigation and management of invasive populations.Analysis of 297 whole-genome sequences of six introduced European rabbit populations, domestic rabbits and wild rabbits from the native range shows wild and domestic ancestry in introduced rabbit populations and purging of alleles for domesticated traits when rabbits colonized novel natural environments.
UR - https://res.slu.se/id/publ/131161
U2 - 10.1038/s41559-024-02443-3
DO - 10.1038/s41559-024-02443-3
M3 - Journal article
C2 - 38907020
SN - 2397-334X
VL - 8
SP - 1543
EP - 1555
JO - Nature ecology & evolution
JF - Nature ecology & evolution
IS - 8
ER -