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Diversity and population connectivity of members of the family Eunicidae inhabiting deep-water corals in the North Atlantic

Gracia-Sancha, Carlota; Roterman, Nicolai; Taylor, Michelle L.; Howell, Kerry L.; Rogers, Alex D.; Ruiz-Cano, Sofía; Taboada, Sergi. 2026 Diversity and population connectivity of members of the family Eunicidae inhabiting deep-water corals in the North Atlantic. Molecular Phylogenetics and Evolution, 225. 108697. 10.1016/j.ympev.2026.108697

Abstract

Eunicid polychaetes are often found in association with Cold Water Corals (CWCs), even establishing symbiotic relationships, such as those described between Desmophyllum pertusum and Eunice norvegica. While genetic connectivity of CWCs across the North Atlantic has been widely studied, little is known about their associated fauna in this regard. Here, we present a study combining a focused analysis of the genetic and genomic connectivity of E. norvegica with a regional assessment of the distribution and evolutionary relationships of three CWC-associated eunicid species from the Cantabrian Sea and the North of the United Kingdom (190–1,230 m depth). An integrative approach using genetic (16S, COI and 18S), morphological and ecological data allowed the identification of the eunicids studied, with new records of Eunice cf. nicidioformis and Leodice cf. antarctica in the Cantabrian Sea, as well as previously undocumented associations with CWC species. In addition, RADseq data contributed to the delimitation of the closely related species E. norvegica and Eunice philocorallia. Moreover, the genetic connectivity of E. norvegica was studied trough a RADseq (1,067 neutral SNPs) approach. Our results indicate a single panmictic population across approximately 2,000 km, suggesting that oceanographic currents facilitate passive dispersal of E. norvegica lecithotrophic larvae, aided by coral host stepping-stones. The connectivity patterns observed for E. norvegica mirror those of D. pertusum, on which the worm is ecologically dependent. Our study highlights the importance of using integrated genetic, morphological and ecological data to characterise and delineate understudied CWC-associated species and improve our understanding of their dispersal capabilities and genetic connectivity to inform future conservation recommendations.

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NOC Mission Networks > Biodiversity
Research Groups > Strategic Science
NOC Research Groups 2025 > Strategic Science
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