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Orchomenella pinguis (amphipoda)-a possible species for heavy metal biomonitoring of marine sediments

摘要Objective:To evaluate the potential local benthic biomonitor organism, Orchomenella pinguis (O. pinguis), for mining contamination by addressing accumulation and toxicity of mining related metals in this arctic marine amphipod. <br> Methods:A toxicity study exposed O. pinguis to four commonly occurring heavy metals (Cd, Cu, Zn and Pb) associated to the mining industry in Greenland using:1) a 5-day water-only bioassay;2) a water-only bioassay evaluating the response between metal accumulation in O. pinguis and metal concentrations in water during a 5-day period;and finally 3) a sediment bioassay evaluating the response between metal accumulation in O. pinguis and metal concentrations in sediment as a function of time during a 20-day period using different mixtures of mining-contaminated sediments. <br> Results:LC50 values for the four metals were 2.8, 5.4, 10.4 and 21.4 μmol/L, for Cu, Cd, Pb and Zn, respectively, with corresponding modelled metal concentrations of 3.4, 1.0, 11.1 and 6.1 μmol/g dry weight. During the sediment exposure experiments, a similar concentration of Zn did not induce lethal effects at the same level. <br> Conclusions: This study demonstrates that the appliance of metal organism concentrations as an estimate of effects is not a sufficient biomonitor of environmental effects. The organism may sequester metals into cellular compartments thus rendering the metals inert for toxic effects. More studies are needed to investigate effects of metal bioavailability. Additional biomarkers such as effects on functional responses e.g. feeding and burial behavior or effects on reproductive success are suggested in order enhance to the ecological significance.

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作者单位 Department of Bioscience-Arctic Research Centre ARC, Aarhus University, Frederiksborgvej 399, 4000 Roskilde, Denmark [1] Arctic Technology Centre, ARTEK-Department of Civil Engineering, Technical University of Denmark, Kemitorvet, Building 204, 2800 Kgs. Lyngby, Denmark [2]
DOI 10.12980/JCLM.2.2014J29
发布时间 2015-10-23
基金项目
Aarhus University
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