Deruytter David, Vandegehuchte Michiel B, Garrevoet Jan, Blust Ronny, Vincze Laszlo, De Schamphelaere Karel A C, Janssen Colin R
Laboratory of Environmental Toxicology and Aquatic Ecology, Department of Applied Ecology and Environmental Biology, Ghent University, Gent, Belgium.
X-Ray Microspectroscopy and Imaging Group, Department of Analytical Chemistry, Ghent University, Gent, Belgium.
Environ Toxicol Chem. 2017 Aug;36(8):2074-2082. doi: 10.1002/etc.3736. Epub 2017 Feb 13.
To improve the ecological relevance of environmental risk assessment, an improved understanding is needed of 1) the influence of environmental conditions on the toxicity of pollutants, and 2) the effect of these factors in combination with possible interpopulation variability. The influences of salinity and dissolved organic carbon (DOC) on the accumulation and effect of copper (Cu) to settled mussels were investigated with mussels from a North Sea and a Baltic Sea population. We found that both populations were equally Cu-sensitive, even though the Baltic Sea population lives in suboptimal conditions. Baltic Sea mussels, however, accumulated more Cu. This suggests that these populations may have different ways of coping with excess Cu. The influence of salinity on Cu toxicity to settled mussels was limited for both populations. An increase in DOC did not decrease the Cu accumulation or effect in either population. This suggests that DOC-Cu complexes are bioavailable for settled mussels. These findings are in contrast with previous research which indicated that DOC decreased the toxicity and accumulation of Cu in the D-larvae life stage. As a consequence, the mussel larval stage is not the most Cu-sensitive life stage at high DOC concentrations. Furthermore, a DOC correction factor for Cu toxicity cannot be used for settled mussels. This should be accounted for in future marine Cu environmental risk assessment. Environ Toxicol Chem 2017;36:2074-2082. © 2017 SETAC.
为提高环境风险评估的生态相关性,需要更好地理解:1)环境条件对污染物毒性的影响;2)这些因素与可能的种群间变异性相结合的影响。利用来自北海和波罗的海种群的贻贝,研究了盐度和溶解有机碳(DOC)对铜(Cu)在附着贻贝体内积累及效应的影响。我们发现,尽管波罗的海种群生活在次优条件下,但两个种群对铜的敏感性相同。然而,波罗的海贻贝积累了更多的铜。这表明这些种群可能有不同的方式来应对过量的铜。盐度对附着贻贝铜毒性的影响对两个种群都有限。DOC的增加并没有降低任何一个种群中铜的积累或效应。这表明DOC-铜络合物对附着贻贝具有生物可利用性。这些发现与之前的研究相反,之前的研究表明DOC会降低D型幼虫生命阶段铜的毒性和积累。因此,在高DOC浓度下,贻贝幼虫阶段不是对铜最敏感的生命阶段。此外,不能将DOC对铜毒性的校正因子用于附着贻贝。在未来的海洋铜环境风险评估中应考虑到这一点。《环境毒理学与化学》2017年;36:2074 - 2082。©2017 SETAC。