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February 19, 2026ICES Journal of Marine Science0 citationsOpen Access

Evidence of genetic differentiation in European hake from the Skagerrak

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MQMaría QuintelaAMAlejandro Mateos‐RiveraJWJon-Ivar Westgaard

Key Points

  • The aim is to investigate the genetic structure of European hake to clarify stock delineation issues.
  • Utilized 44 SNP markers for genetic analysis
  • Applied linkage disequilibrium-pruning
  • Identified candidate loci for positive selection
  • Examined differences between the Skagerrak and adjacent areas
  • Identified a genetically distinct subunit of European hake in the Skagerrak
  • Found significant genetic differences in Norwegian coastal/fjordic areas
  • Challenged existing stock delineation models based on genetic data

Abstract

Abstract The stock delineation of European hake, Merluccius merluccius has long been debated due to the persistent discrepancies between biologically defined populations and management units, despite the species’ significant economic importance. This study investigated population genetic structure within the northern European hake stock using 44 SNP markers following linkage disequilibrium-pruning. Whereas two of the loci were identified as consensus candidate outliers for positive selection, no balancing selection was detected. We found further evidence to challenge the current stock delineation by identifying a genetically distinct subunit in the Skagerrak. Likewise, and beyond the management delineation of the northern stock, European hake in a coastal/fjordic area of the Norwegian Sea was found to be significantly different. Our findings suggest that fine-scale genetic population structure should be explored in combination with life history traits to align biologically meaningful units with stock boundaries and facilitate sound resource management. Additionally, this study also contributes to the growing body of literature documenting marine species with populations in the Skagerrak that are genetically or ecologically distinct from those in adjacent seas; a differentiation that is partially driven by the strong salinity gradients resulting from the mixing of saline Atlantic and brackish Baltic waters.

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Cite This Study

Quintela et al. (2026) studied this question.

synapsesocial.com/papers/6996a8efecb39a600b3f0296https://doi.org/10.1093/icesjms/fsag013
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