School of Environmental Studies and Department of Biology, Queen's University, Kingston, Ontario, Canada K7L 3N6.
Environ Pollut. 2012 Feb;161:178-84. doi: 10.1016/j.envpol.2011.10.023. Epub 2011 Nov 16.
Seasonal variation in mercury (Hg) concentrations and food web structure was assessed for eastern Lake Ontario. Hg concentrations, measured in 6 species of invertebrates and 8 species of fishes, tended to be highest in the spring and lowest in the summer for most biota. Yellow perch (Perca flavescens) exhibited significant ontogenetic shifts in diet and Hg, although such patterns were not evident for other species. Food web structure, as indicated by stable isotope values (δ(15)N, δ(13)C) was not static. Log-transformed Hg data were strongly and consistently correlated with δ(15)N values for the whole food web in each of the three seasons (slopes, 0.17-0.24) and across the entire year (slope, 0.2). While significantly different between seasons, the regression slope values are still consistent with published global Hg biomagnification rates. Our results indicate that the assessment of Hg trends in Great Lakes must take into account seasonal patterns and time of sampling.
评估了安大略湖南部的汞(Hg)浓度和食物网结构的季节性变化。在大多数生物群中,6 种无脊椎动物和 8 种鱼类的 Hg 浓度在春季最高,夏季最低。黄鲈(Perca flavescens)的饮食和 Hg 表现出明显的发育变化,尽管其他物种没有明显的模式。食物网结构,如稳定同位素值(δ(15)N,δ(13)C)所示,并不稳定。在每个季节(斜率为 0.17-0.24)和整个一年(斜率为 0.2),经对数转换的 Hg 数据与整个食物网的 δ(15)N 值之间存在强烈而一致的相关性。虽然季节之间存在显著差异,但回归斜率值仍与已发表的全球 Hg 生物放大率一致。我们的结果表明,评估大湖 Hg 趋势必须考虑季节模式和采样时间。