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首页> 外文期刊>The Science of the Total Environment >Inter-species differences of total mercury and methylmercury in farmed fish in Southern China: Does feed matter?
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Inter-species differences of total mercury and methylmercury in farmed fish in Southern China: Does feed matter?

机译:中国南方养殖鱼类和甲基汞的物种间差异:饲料物质吗?

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China is now the largest producer of marine farmed fish and there is a considerable concern of seafood safety due to potential mercury contamination. We analyzed both the total mercury (THg) and methylmercury (MeHg) concentrations in nine species of commercial fish from two marine-cage farm sin Southern China. C-13 and (15)Nstable isotopes were concurrently analyzed to identify the artificial feed sources and the trophic levels of farmed fish. Mercury concentrations of all species were much lower than the human health screening values and safety limits established by different countries. Mercury levels in artificial pellets were the main determinants of Hg accumulation in fish between two sites, while somatic growth dilution and size also played an important role. Among the different fish tissues, muscle was a major reservoir for Hg and contained the highest ratio of MeHg/THg, and liver was the second important organ for Hg accumulation in most fish species. Intestine was a critical organ for Hg biotransformation with its %MeHg differing greatly among different fish species. delta N-15 analysis could not be used to determine the trophic levels in culturing systems where artificial practices were involved. Based on the delta C-13 signatures, five species of fish were identified to solely feed on the artificial pellets, yet the Hg bioaccumulation differed significantly among these species. We therefore concluded that Hg bioaccumulation in different fish species may be dependent on their internal Hg biotransformation as well as their biokinetics. (C) 2018 Elsevier B.V. All rights reserved.
机译:中国现在是海洋养殖的最大生产国,由于潜在的汞污染,海产安全有很大的关注。我们分析了来自中国南方海洋笼子仙群的九种商业鱼中的汞(ZHG)和甲基汞(MEHG)浓度。 C-13和(15)同时分析Nstable同位素以鉴定人工饲料来源和养殖鱼类的营养水平。所有物种的汞浓度远低于不同国家建立的人体健康筛查价值和安全限制。人工颗粒中的汞水平是两位点之间的鱼类积聚的主要决定因素,而体细胞生长稀释和大小也发挥了重要作用。在不同的鱼类组织中,肌肉是HG的主要储层,含有最高比例的MeHG / THG,肝脏是大多数鱼类中HG积累的第二个重要器官。肠道是HG生物转化的关键器官,其%Mehg在不同的鱼类中的大量不同。三角洲N-15分析不能用于确定涉及人工实践的培养系统中的营养水平。基于Delta C-13签名,鉴定了五种鱼类以单独饲喂人工颗粒,但这些物种中的Hg生物累积有显着差异。因此,我们得出结论,不同鱼类中的Hg生物累积可能依赖于其内部Hg生物转化以及它们的生物幂术。 (c)2018年elestvier b.v.保留所有权利。

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