Deruytter David, Vandegehuchte Michiel B, Garrevoet Jan, De Laender Frederik, Vergucht Eva, Delbeke Katrien, Blust Ronny, De Schamphelaere Karel A C, Vincze Laszlo, Janssen Colin R
Laboratory of Environmental Toxicology and Aquatic Ecology, Department of Applied Ecology and Environmental Biology, Ghent University, Ghent, Belgium.
X-ray Microspectroscopy and Imaging Group, Department of Analytical Chemistry, Ghent University, Ghent, Belgium.
Environ Toxicol Chem. 2015 Jun;34(6):1330-6. doi: 10.1002/etc.2924. Epub 2015 Apr 9.
Predicting copper (Cu) toxicity in marine and estuarine environments is challenging because of the influence of anions on Cu speciation, competition between Cu(2+) and other cations at the biotic ligand and the effect of salinity on the physiology of the organism. In the present study the combined effect of salinity and dissolved organic carbon (DOC) on Cu toxicity to larvae of Mytilus galloprovincialis was assessed. Two statistical models were developed and used to elucidate the relationship between Cu toxicity, salinity, and DOC. All models based on dissolved Cu indicate a decrease in Cu toxicity with increasing DOC concentrations, which can partly be explained by complexation of Cu(2+) ions with DOC. These models also indicate an increase in Cu toxicity (modeled with dissolved Cu or Cu(2+) activity) with increasing salinity, suggesting a salinity-induced alteration in the physiology of the mussel larvae. When based on Cu body burdens, neither of the models indicates an effect of salinity or DOC. This shows that the Cu body burden is a more constant predictor of Cu toxicity, regardless of the water chemistry influencing Cu speciation or competition and possible physiological alterations or changes in Cu speciation or competition.
预测海洋和河口环境中的铜(Cu)毒性具有挑战性,这是因为阴离子对铜形态的影响、Cu(2+)与其他阳离子在生物配体上的竞争以及盐度对生物体生理的影响。在本研究中,评估了盐度和溶解有机碳(DOC)对加利福尼亚贻贝幼虫铜毒性的综合影响。开发了两个统计模型并用于阐明铜毒性、盐度和DOC之间的关系。所有基于溶解态铜的模型均表明,随着DOC浓度的增加,铜毒性降低,这部分可以用Cu(2+)离子与DOC的络合来解释。这些模型还表明,随着盐度的增加,铜毒性增加(以溶解态铜或Cu(2+)活性建模),这表明盐度会导致贻贝幼虫生理发生变化。当基于铜的体内负荷时,两个模型均未表明盐度或DOC有影响。这表明,无论影响铜形态或竞争的水化学因素以及可能的生理变化或铜形态或竞争的变化如何,铜的体内负荷都是铜毒性更稳定的预测指标。