Genetic architecture and lifetime dynamics of inbreeding depression in a wild mammal

Inbreeding depression is ubiquitous, but we still know little about its genetic architecture and precise effects in wild populations. Here, we combine long-term life-history data with 417 K imputed SNP genotypes for 5952 wild Soay sheep to explore inbreeding depression on a key fitness component, an...

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Veröffentlicht in:Nature communications 2021-05, Vol.12 (1), p.2972-2972, Article 2972
Hauptverfasser: Stoffel, M. A., Johnston, S. E., Pilkington, J. G., Pemberton, J. M.
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Sprache:eng
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Zusammenfassung:Inbreeding depression is ubiquitous, but we still know little about its genetic architecture and precise effects in wild populations. Here, we combine long-term life-history data with 417 K imputed SNP genotypes for 5952 wild Soay sheep to explore inbreeding depression on a key fitness component, annual survival. Inbreeding manifests in long runs of homozygosity (ROH), which make up nearly half of the genome in the most inbred individuals. The ROH landscape varies widely across the genome, with islands where up to 87% and deserts where only 4% of individuals have ROH. The fitness consequences of inbreeding are severe; a 10% increase in individual inbreeding F ROH is associated with a 60% reduction in the odds of survival in lambs, though inbreeding depression decreases with age. Finally, a genome-wide association scan on ROH shows that many loci with small effects and five loci with larger effects contribute to inbreeding depression in survival. Without understanding the genetic architecture of inbreeding depression, its effects are hard to pinpoint. Long-term data from wild Soay sheep shows that inbreeding manifests in long runs of homozygosity, which made up nearly half of the genome in the most inbred individuals with severe fitness consequences.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-021-23222-9