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Gulbrandsen, O. S.

Publications and source records attributed to Gulbrandsen, O. S..

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PRDM9 Alleles Guide Distinct Patterns of Recombination Localization in Atlantic Salmon

Meiotic recombination in many vertebrate lineages is directed to genomic regions by the DNA-binding protein PRDM9. To date, PRDM9 research has focused primarily on mammals, and its role in recombination localization has only recently been established in salmonids. PRDM9 binding specificity is determined by a tandemly repeated zinc-finger array that exhibits extensive allelic diversity within and between species. However, the extent to which PRDM9 variation shapes recombination landscapes in salmonids remains poorly understood. Here, we performed large-scale genotyping of PRDM9 in an aquaculture population of Atlantic salmon (Salmo salar) using long-read sequencing. By integrating PRDM9 genotypes with pedigree information and genome-wide recombination data, we generated PRDM9-specific linkage maps and sets of inferred crossover events. We show that the presence of specific PRDM9 alleles is associated with differences in recombination localization and identify patterns consistent with dominance interactions between alleles. Using population-averaged recombination rate estimates, we further link a previously described sequence motif enriched in European recombination hotspots to the presence of a common PRDM9 zinc-finger array allele (RPT6a). Together, our results demonstrate functional differences between PRDM9 alleles which contribute to divergence in recombination landscapes in Atlantic salmon, paralleling patterns observed in mammals. The broad geographic distribution of Atlantic salmon, combined with extensive pedigree data generated through aquaculture, highlights its potential as a powerful model for studying PRDM9 function and evolution beyond mammals.

genetics↗