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在气候变暖的情况下,北极鱼类狗鱼(Lota lota)体内的污染物负担不断增加。

Increasing contaminant burdens in an arctic fish, Burbot ( Lota lota ), in a warming climate.

机构信息

Centre for Earth Observation Science, Department of Environment & Geography, University of Manitoba, 125 Dysart Road, Winnipeg, Manitoba R3T 2N2, Canada.

出版信息

Environ Sci Technol. 2010 Jan 1;44(1):316-22. doi: 10.1021/es902582y.

Abstract

The temporal patterns of mercury (Hg), polychlorinated biphenyls (PCBs), and other contaminants in Arctic aquatic biota are usually attributed to changing atmospheric sources. However, climate variability and change is another means of altering contaminant fate and bioavailability. We show here that the concentrations of Hg and PCBs in Mackenzie River burbot ( Lota lota ), a top predator fish and important staple food for northern Canadian communities, have increased significantly over the last 25 years despite falling or stable atmospheric concentrations, suggesting that environmental processes subsequent to atmospheric transport are responsible. Using a dated sediment core from a tributary lake near the Mackenzie River sampling site, we show that variations in Hg concentrations downcore are strongly associated with labile, algal-derived organic matter (OM). Strong temporal correlations between increasing primary productivity and biotic Hg and PCBs as reflected by burbot suggest that warming temperatures and reduced ice cover may lead to increased exposure to these contaminants in high trophic level Arctic freshwater biota.

摘要

尽管大气中汞(Hg)和多氯联苯(PCBs)等污染物的浓度在下降或保持稳定,但过去 25 年来,麦肯齐河狗鱼(Lota lota)体内的 Hg 和 PCB 浓度却显著上升,这种变化通常归因于大气污染源的变化。狗鱼是顶级掠食性鱼类,也是加拿大北部社区的重要主食,而这种上升表明,大气传输后的环境过程是造成这一现象的原因。本研究利用麦肯齐河采样点附近一条支流湖泊的 dated sediment core,结果表明,Hg 浓度在沉积物中的变化与活性藻类衍生有机物(OM)密切相关。狗鱼体内生物 Hg 和 PCBs 的增加与初级生产力的增加具有很强的时间相关性,这表明,在高营养级别的北极淡水生物中,变暖的温度和减少的冰盖可能会导致其接触到这些污染物的风险增加。

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