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Biodynamic modelling of the accumulation of Ag,Cd and Zn by the deposit-feeding polychaete Nereis diversicolor: Inter-population variability and a generalised predictive model
Institution:1. Department of Environmental, Agricultural and Occupational Health, University of Nebraska - Medical Center, Omaha, NE 68198-6805, United States;2. Department of Biology, University of Nebraska at Omaha, Omaha, NE 68182-0040, United States;3. Water for Food Institute, University of Nebraska-Lincoln, Lincoln, NE 68583-0844, United States;4. Idaho Water Resources Research Institute, University of Idaho, Moscow, ID 83844-3002, United States;1. Key Laboratory of Aquaculture and Ecology of Coastal Pool of Jiangsu Province, Department of Ocean Technology, Yancheng Institute of Technology, Yancheng, Jiangsu 224003, China;2. College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, China;1. Department of Biology, University of Kentucky, Lexington, KY 40506, USA;2. Behavioral Neuroscience Program, Department of Psychology, The State University of New York at Buffalo, Buffalo, New York 14260, USA
Abstract:Biodynamic parameters of the ragworm Nereis diversicolor from southern Spain and south England were experimentally derived to assess the inter-population variability of physiological parameters of the bioaccumulation of Ag, Cd and Zn from water and sediment. Although there were some limited variations, these were not consistent with the local metal bioavailability nor with temperature changes. Incorporating the biodynamic parameters into a defined biodynamic model, confirmed that sediment is the predominant source of Cd and Zn accumulated by the worms, accounting in each case for 99% of the overall accumulated metals, whereas the contribution of dissolved Ag to the total accumulated by the worm increased from about 27 to about 53% with increasing dissolved Ag concentration. Standardised values of metal-specific parameters were chosen to generate a generalised model to be extended to N. diversicolor populations across a wide geographical range from western Europe to North Africa. According to the assumptions of this model, predicted steady state concentrations of Cd and Zn in N. diversicolor were overestimated, those of Ag underestimated, but still comparable to independent field measurements. We conclude that species-specific physiological metal bioaccumulation parameters are relatively constant over large geographical distances, and a single generalised biodynamic model does have potential to predict accumulated Ag, Cd and Zn concentrations in this polychaete from a single sediment metal concentration.
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