Mercury biomagnification in food webs of the northeastern Chukchi Sea, Alaskan Arctic

Autor: Brenda Konar, Carin J. Ashjian, Lee W. Cooper, Brenda K. Lasorsa, Kenneth H. Dunton, Austin L. Fox, Robert P. Trocine, John H. Trefry
Rok vydání: 2017
Předmět:
Zdroj: Deep Sea Research Part II: Topical Studies in Oceanography. 144:63-77
ISSN: 0967-0645
Popis: Predictive tools and a large new dataset for the northeastern Chukchi Sea (NECS) are used here to help identify regional differences and potential future shifts in the magnitude of Hg biomagnification in the Arctic. At the base of the food web in the NECS, concentrations of total mercury (THg) in phytoplankton (20-µm mesh) ranged from 4–42 ng g −1 dry weight, partly in response to variations in algal biomass and water temperature. A >3-fold increase in monomethylmercury (MMHg) was observed in zooplankton (4.3±0.7 ng g −1 ) relative to phytoplankton ( −1 ), even though concentrations of THg in zooplankton (150-µm mesh) were not significantly different than in phytoplankton. Concentrations and % MMHg increased with trophic level (TL) by >150-fold and from 85%, respectively, from phytoplankton to muscle in the whelk Plicifusus kroeyeri (279 ng g −1 , TL 4.5). For muscle tissue in 10 species plus whole phytoplankton and zooplankton, the trophic magnification slope (TMS) for MMHg (log 10 [MMHg] =m (δ 15 N)+ b ; where m =TMS) was 0.23±0.02 (SE). No significant differences in TMS were found for the NECS plus three other studies from the eastern Canadian Arctic (average TMS=0.24±0.02). Nevertheless, all data for MMHg in biota from the NECS plotted below the combined best fit line for all four studies. Results from an ANCOVA showed that statistically different ( p =0.001) intercept values ( b ), not TMS, best explained the >2-fold lower concentrations of MMHg in biota from the NECS ( b =−1.85) relative to the same species from the eastern Canadian Arctic ( b =−1.29). Future changes that affect bioaccumulation of MMHg in the Arctic may impact the biomagnification equation by shifting the TMS, intercept or both. The intercept is more likely to respond to changes in productivity and concentrations of dissolved Hg whereas the TMS may respond to changing growth rates due to fluctuations in productivity and food availability. In either case, small changes in the intercept or TMS coincide with predictably large increases or decreases in MMHg concentrations in apex predators.
Databáze: OpenAIRE