Buckman Andrea H, Norstrom Ross J, Hobson Keith A, Karnovsky Nina J, Duffe Jason, Fisk Aaron T
Department of Environmental Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.
Environ Pollut. 2004;128(3):327-38. doi: 10.1016/j.envpol.2003.09.017.
Organochlorine contaminants (OCs) were determined in liver and fat of seven species of seabirds (Alle alle, Uria lomvia, Cepphus grylle, Rissa tridactyla, Pagophila eburnea, Larus hyperboreus, and Fulmaris glacialis) collected in May/June 1998 from the Northwater Polynya in northern Baffin Bay. OC concentrations ranged over an order of magnitude between seabird species and OC groups, with PCBs having the highest concentrations followed by DDT, chlordane, HCH and ClBz. Positive relationships between delta15N (estimator of trophic level) and OC concentrations (lipid basis) were found for all OC groups, showing that trophic position and biomagnification significantly influence OC concentrations in Arctic seabirds. Concentrations of a number of OCs in particular species (e.g., HCH in P. eburnean) were lower than expected based on delta15N and was attributed to biotransformation. P. eburnea and F. glacialis, which scavenge, and R. tridactyla, which migrate from the south, were consistently above the delta15N-OC regression providing evidence that these variables can elevate OC concentrations. Stable isotope measurements in muscle may not be suitable for identifying past scavenging events by seabirds. OC relative proportions were related to trophic position and phylogeny, showing that OC biotransformation varies between seabird groups. Trophic level, migration, scavenging and biotransformation all play important roles in the OCs found in Arctic seabirds.
1998年5月/6月从巴芬湾北部的北水多边形海域采集了7种海鸟(侏海雀、厚嘴海鸦、黑喉潜鸟、三趾鸥、象牙鸥、北极鸥和暴雪鹱)的肝脏和脂肪,测定了其中的有机氯污染物(OCs)。海鸟种类和OCs类别之间的OC浓度范围超过一个数量级,多氯联苯(PCBs)浓度最高,其次是滴滴涕(DDT)、氯丹、六氯环己烷(HCH)和氯苯(ClBz)。所有OCs类别均发现δ15N(营养级估计值)与OC浓度(脂基)之间存在正相关关系,表明营养级位置和生物放大作用显著影响北极海鸟体内的OC浓度。特定物种(如象牙鸥体内的HCH)中一些OCs的浓度低于基于δ15N预期的浓度,这归因于生物转化。以腐食为生的象牙鸥和暴雪鹱以及从南方迁徙而来的三趾鸥的OC浓度始终高于δ15N-OC回归值,这证明这些变量会提高OC浓度。肌肉中的稳定同位素测量可能不适用于识别海鸟过去的腐食事件。OCs的相对比例与营养级位置和系统发育有关,表明OCs生物转化在海鸟群体之间存在差异。营养级、迁徙、腐食和生物转化在北极海鸟体内发现的OCs中均发挥着重要作用。