Reduced-Representation Sequencing Detects Trans-Arctic Connectivity and Local Adaptation in Polar Cod (Boreogadus saida). [PDF]
ABSTRACT Information on connectivity and genetic structure of marine organisms remains sparse in frontier ecosystems such as the Arctic Ocean. Filling these knowledge gaps becomes increasingly urgent, as the Arctic is undergoing rapid physical, ecological and socio‐economic changes.
Maes SM +14 more
europepmc +2 more sources
Climate change opens new frontiers for marine species in the Arctic: Current trends and future invasion risks. [PDF]
Chan FT +9 more
europepmc +1 more source
Climate effects on temporal and spatial dynamics of phytoplankton and zooplankton in the Barents Sea
Progress in Oceanography, 2020Erik Sperfeld +2 more
exaly
Effects of Climate Change on Chlorophyll a in the Barents Sea: A Long-Term Assessment
Biology, 2023Aleksandra Bulavina +2 more
exaly
The Barents sea capelin stock 1972–1997. A synthesis of results from acoustic surveys
Sarsia, 1998Harald Gjøsæter
exaly
Cenozoic erosion and the preglacial uplift of the Svalbard–Barents Sea region
Tectonophysics, 1998Jan Inge Faleide, Anders Elverhøi
exaly
Toward an ice‐free Barents Sea
Geophysical Research Letters, 2017Íngrid Husøy Onarheim, Marius Arthun
exaly
The population biology and exploitation of capelin (Mallotus villosus) in the barents sea
Sarsia, 1998Harald Gjøsæter
exaly
Ecosystem effects of the three capelin stock collapses in the Barents Sea
Marine Biology Research, 2009Harald Gjøsæter, Bjarte Bogstad
exaly

