Laboratory of Environmental Toxicology and Aquatic Ecology, Department of Applied Ecology and Environmental Biology, Ghent University , Jozef Plateaustraat 22, B-9000 Gent, Belgium.
Environ Sci Technol. 2014;48(1):698-705. doi: 10.1021/es4024699. Epub 2013 Dec 13.
Larvae of Mytilus spp. are among the most Cu sensitive marine species. In this study we assessed the combined effect of salinity and dissolved organic carbon (DOC) on Cu accumulation on mussel larvae. Larvae were exposed for 48 h to three Cu concentrations in each of nine salinity/DOC treatments. Synchrotron radiation X-ray fluorescence was used to determine the Cu concentration in 36 individual larvae with a spatial resolution of 10 × 10 μm. Cu body burden concentrations varied between 1.1 and 27.6 μg/g DW larvae across all treatments and Cu was homogeneously distributed at this spatial resolution level. Our results indicate decreasing Cu accumulation with increasing DOC concentrations which can be explained by an increase in Cu complexation. In contrast, salinity had a nonlinear effect on Cu. This cannot be explained by copper speciation or competition processes and suggests a salinity-induced alteration in physiology.
贻贝幼虫是对铜最敏感的海洋物种之一。在这项研究中,我们评估了盐度和溶解有机碳 (DOC) 对贻贝幼虫铜积累的联合效应。幼虫在 9 种盐度/DOC 处理中的三种铜浓度下暴露 48 小时。同步辐射 X 射线荧光用于确定 36 个个体幼虫的 Cu 浓度,空间分辨率为 10×10μm。在所有处理中,Cu 体负荷浓度在 1.1 到 27.6μg/g DW 幼虫之间变化,并且在这个空间分辨率水平上 Cu 均匀分布。我们的结果表明,随着 DOC 浓度的增加,Cu 的积累减少,这可以用 Cu 络合的增加来解释。相比之下,盐度对 Cu 具有非线性影响。这不能用铜形态或竞争过程来解释,这表明盐度诱导的生理变化。