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阿根廷巴塔哥尼亚纳韦尔瓦皮湖食物网中的汞和硒。

Mercury and selenium in the food web of Lake Nahuel Huapi, Patagonia, Argentina.

机构信息

Laboratorio de Análisis por Activación Neutrónica, Centro Atómico Bariloche, CNEA, Av. Bustillo 9500, 8400 Bariloche, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.

Laboratorio de Análisis por Activación Neutrónica, Centro Atómico Bariloche, CNEA, Av. Bustillo 9500, 8400 Bariloche, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.

出版信息

Chemosphere. 2017 Jan;166:163-173. doi: 10.1016/j.chemosphere.2016.09.085. Epub 2016 Sep 30.

Abstract

Despite located far from point sources of Hg pollution, high concentrations were recorded in plankton from the deep oligotrophic Lake Nahuel Huapi, located in North Patagonia. Native and introduced top predator fish with differing feeding habits are a valuable economic resource to the region. Hence, Hg and Se trophic interactions and pathways to these fish were assessed in the food web of this lake at three sites, using stable nitrogen and carbon isotopes. As expected based on the high THg in plankton, mercury did not biomagnify in the food web of Lake Nahuel Huapi, as most of the THg in plankton is in the inorganic form. As was observed in other aquatic systems, Se did not biomagnify either. When trophic pathways to top predator fish were analyzed, they showed that THg biomagnified in the food chains of native fish but biodiluted in the food chains of introduced salmonids. A more benthic diet, typical of native fish, resulted in higher [THg] bioaccumulation than a more pelagic or mixed diet, as in the case of introduced fish. Se:THg molar ratios were higher than 1 in all the fish species, indicating that Se might be offering a natural protection against Hg toxicity.

摘要

尽管远离汞污染的点源,但在位于北巴塔哥尼亚的贫营养深水湖纳韦尔瓦皮湖中,浮游生物的汞浓度却很高。具有不同摄食习性的本地和引入的顶级捕食性鱼类是该地区有价值的经济资源。因此,在该湖的三个地点,使用稳定的氮和碳同位素,评估了汞和硒在该湖食物网中的营养相互作用和传递途径。正如浮游生物中高总汞所预期的那样,由于浮游生物中的大部分总汞呈无机形式,汞在纳韦尔瓦皮湖的食物网中并没有生物放大。与其他水生系统一样,硒也没有生物放大。当分析顶级捕食性鱼类的营养途径时,结果表明,总汞在本地鱼类的食物链中生物放大,但在引入的鲑鱼的食物链中生物稀释。与引入的鱼类相比,典型的本地鱼类的更底栖的饮食导致更高的[总汞]生物积累。所有鱼类的硒:总汞摩尔比均高于 1,表明硒可能对汞毒性提供了自然保护。

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