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Contrasting Food Web Factor and Body Size Relationships with Hg and Se Concentrations in Marine Biota

机译:海洋生物区系中食物网因子和体重关系与汞和硒浓度的对比

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摘要

Marine fish and shellfish are primary sources of human exposure to mercury, a potentially toxic metal, and selenium, an essential element that may protect against mercury bioaccumulation and toxicity. Yet we lack a thorough understanding of Hg and Se patterns in common marine taxa, particularly those that are commercially important, and how food web and body size factors differ in their influence on Hg and Se patterns. We compared Hg and Se content among marine fish and invertebrate taxa collected from Long Island, NY, and examined associations between Hg, Se, body length, trophic level (measured by δ15N) and degree of pelagic feeding (measured by δ13C). Finfish, particularly shark, had high Hg content whereas bivalves generally had high Se content. Both taxonomic differences and variability were larger for Hg than Se, and Hg content explained most of the variation in Hg:Se molar ratios among taxa. Finally, Hg was more strongly associated with length and trophic level across taxa than Se, consistent with a greater degree of Hg bioaccumulation in the body over time, and biomagnification through the food web, respectively. Overall, our findings indicate distinct taxonomic and ecological Hg and Se patterns in commercially important marine biota, and these patterns have nutritional and toxicological implications for seafood-consuming wildlife and humans.
机译:海水鱼和贝类是人类接触汞(一种潜在有毒金属)和硒的主要来源,而硒是一种可以防止汞生物积累和毒性的基本元素。然而,我们对普通海洋生物分类中的汞和硒形态缺乏透彻的了解,尤其是那些在商业上很重要的物种,以及食物网和体型因素对汞和硒形态的影响有何不同。我们比较了从纽约长岛采集的海鱼和无脊椎动物类群中的Hg和Se含量,并检查了Hg,Se,体长,营养水平(以δ 15 N衡量)和上浮度之间的关联进料(以δ 13 C测量)。鳍鱼,尤其是鲨鱼,具有较高的汞含量,而双壳类动物通常具有较高的硒含量。汞的分类学差异和变异性都比硒大,汞含量可以解释大多数类别中Hg:Se摩尔比的变化。最后,汞在整个分类单元中与长度和营养水平的相关性比硒更强,这与人体中汞随着时间的推移在生物体内的积累程度更高以及通过食物网的生物放大程度有关。总体而言,我们的发现表明,在商业上重要的海洋生物区系中,汞和硒的分类和生态形态明显不同,这些形态对食用海鲜的野生动植物和人类具有营养和毒理学意义。

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