• Contrasting physiological responses to future ocean acidification among Arctic copepod populations 

      Thor, Peter; Bailey, Allison Michelle; Dupont, Sam; Calosi, Piero; Søreide, Janne; De Wit, Pierre; Guscelli, Ella; Loubet-Sartrou, Lea; Deichmann, Ida M.; Candee, Martin M.; Svensen, Camilla; King, Andrew Luke; Bellerby, Richard (Journal article; Tidsskriftartikkel; Peer reviewed, 2017-08-17)
      Widespread ocean acidification (OA) is modifying the chemistry of the global ocean, and the Arctic is recognized as the region where the changes will progress at the fastest rate. Moreover, Arctic species show lower capacity for cellular homeostasis and acid‐base regulation rendering them particularly vulnerable to OA. In the present study, we found physiological differences in OA response across ...
    • Marine CDOM accumulation during a coastal Arctic mesocosm experiment: No response to elevated pCO2 levels 

      Pavlov, Alexey K.; Silyakova, Anna; Granskog, Mats A.; Bellerby, Richard; Engel, Anja; Schulz, Kai G.; Brussaard, Corina P. D. (Journal article; Tidsskriftartikkel; Peer reviewed, 2014-05-22)
      A large-scale multidisciplinary mesocosm experiment in an Arctic fjord (Kongsfjorden, Svalbard; 78°56.2′N) was used to study Arctic marine food webs and biogeochemical elements cycling at natural and elevated future carbon dioxide (CO2) levels. At the start of the experiment, marine-derived chromophoric dissolved organic matter (CDOM) dominated the CDOM pool. Thus, this experiment constituted a ...