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Berg, P. R.

Publications and source records attributed to Berg, P. R..

2 recordsLinked to original sources

Combining environmental DNA and traditional sampling to assess the role of kelp aquaculture as an artificial habitat in Norway

Kelp aquaculture is expanding rapidly in the temperate Atlantic, yet its ecological role as an artificial habitat remains poorly understood. This study assessed the biodiversity associated with wave-exposed kelp farms in coastal Norway using both environmental DNA (eDNA) and traditional sampling methods. Fish and invertebrate communities were surveyed at two kelp farms and compared to nearby natural kelp forests and pelagic control sites. Results from gill-net fishing, camera observations, and invertebrate sampling revealed lower species richness and abundance at kelp farms compared to natural habitats. eDNA analyses (12S and CO1 markers) showed few differences in community composition between sites, and no species were identified as indicators of kelp farms. Traditional sampling detected the presence of the amphipod Caprella mutica in the kelp farms, indicating that operators can play roles in alien species spread. Overall, kelp farms supported distinct but less diverse communities than natural kelp forests, being more similar to pelagic control sites. Finally, eDNA provided limited insights compared to traditional methods. These findings suggest that kelp farms currently provide limited habitat provisioning in Norway, likely as a result of how and where kelp aquaculture is currently performed. We suggest the need for population-level assessments for relevant species like Atlantic lumpfish (Cyclopterus lumpus) and locally based assessments in collaboration with authorities to define nature-positive or negative outcomes to balance ecological and economic goals in the growing seaweed aquaculture industries of the Atlantic.

ecology↗

Chromosomal fusions and large-scale inversions are key features for adaptation in Arctic codfish species

The evolutionary impact of structural variants, such as chromosomal inversions, is well documented, especially for their role in local adaptation in high gene flow systems. However, the role of other genomic rearrangements like chromosomal fusions, fissions, and translocations is still relatively unexplored. Here we present six chromosome-level Gadid reference genomes for the non-migratory Atlantic cod (Gadus morhua) i.e., Norwegian coastal cod (NCC), Atlantic haddock (Melanogrammus aeglefinus), burbot (Lota lota), European hake (Merluccius merluccius) as well as two keystone Arctic codfishes: the polar cod (Boreogadus saida) and Arctic cod (Arctogadus glacialis). Within a comparative genomics framework, we uncovered several lineage-specific chromosomal fusions, resulting in a reduced number of chromosomes compared to the ancestral state in the two cold-water adapted codfishes. The identified fusions were not homologous, i.e., indicating that they originate from independent evolutionary events. Additionally, a high number of partly overlapping chromosomal inversions between the two species were detected. Using a smaller population dataset, we uncovered a high degree of conservation for some of the overlapping inversions (including some breakpoint regions), suggesting that these regions are under selection, and potentially of evolutionary importance. With the use of chromosome-level genome assemblies, we demonstrate how large genomic reorganizations are likely to play important roles in speciation processes and thus, in particular to adaptation to freezing environmental conditions. Moreover, we observe that such massive rearrangement events can take place across relatively short evolutionary time scales.

genomics↗