A Tropical Estuary Where Mercury Does Not Biomagnify and its Adjacent Waters that Render Extremely High Mercury Concentrations in Top Predators.

IF 3.7 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Paulo R Dorneles, Thaís de C Paiva, Gabriel P Bighetti, Dhoone Menezes, António M B Marques, Patricia S L Anacleto, Leonardo Flach, Fabíola H S Fogaça, Ana Paula C Farro, Mariana F Nery, Ana Lúcia Cypriano-Souza, Mirela D'arc, João P M Torres, Mariana B Alonso
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Abstract

In general, mercury (Hg) undergoes biomagnification in aquatic systems. The absence of Hg biomagnification in a certain aquatic environment constitutes an exceptional finding and this seems to be the case for Sepetiba Bay, in Rio de Janeiro state (RJ), Brazil. There are three distinct ecological populations of Guiana dolphins in the Sepetiba Bay (SB)-Ilha Grande Bay (IGB) Complex, inhabiting: (1) the inner part of SB; (2) SB entrance; and (3) IGB. In addition, there are two other delphinid species, rough-toothed dolphin and Atlantic spotted dolphin, that feed on the SB-IGB Complex. Considering the widely employed use of cetaceans as sentinels of environmental contamination by bioaccumulative toxicants, we have biopsy sampled individuals of the abovementioned ecological populations/species for measuring skin Hg concentrations. Two Bryde's whales and one humpback whale were biopsied in the SB-IGB Complex as well. Skin Hg concentrations [μg g-1 dry weight (dw)] of Guiana dolphins were the highest in IGB, followed by SB entrance and the inner part of SB (0.99-5.47; 0.09-6.00; 0.08-2.22). Considering all species investigated in the present study, skin Hg concentrations were found in the following order: humpback whale < Bryde's whale < Guiana dolphins from SB inner part < Guiana dolphins from SB entrance < Guiana dolphins IGB = Atlantic spotted dolphins < rough-toothed dolphins. The skin Hg concentrations found in Guiana dolphins from the inner part of Sepetiba Bay (0.08-2.22) and rough-toothed dolphins from the SB-IGB Complex (1.26-20.0) are among the lowest and highest ever reported for dolphins worldwide, respectively.

汞不会发生生物放大作用的热带河口及其邻近水域的顶级食肉动物体内汞浓度极高。
一般来说,汞(Hg)会在水生系统中发生生物放大作用。在某种水生环境中没有汞的生物放大作用是一种特殊的发现,巴西里约热内卢州(RJ)的塞佩蒂巴湾似乎就是这种情况。塞佩蒂巴湾(SB)-格兰德河湾(IGB)复合生态系统中有三个不同的圭亚那海豚生态种群,分别栖息在:(1) 塞佩蒂巴湾内部;(2) 塞佩蒂巴湾入口;(3) 格兰德河湾。此外,还有另外两种海豚,即粗吻海豚和大西洋斑纹海豚,也在南部湾-格兰德湾综合区觅食。考虑到鲸类动物被广泛用作生物累积性有毒物质污染环境的哨兵,我们对上述生态种群/物种的个体进行了活检取样,以测量皮肤的汞浓度。此外,我们还在 SB-IGB 海洋综合体对两头布氏鲸和一头座头鲸进行了活检。圭亚那海豚的皮肤汞浓度[μg g-1 干重(dw)]在 IGB 最高,其次是 SB 入口和 SB 内部(0.99-5.47; 0.09-6.00; 0.08-2.22)。在本研究调查的所有物种中,皮肤汞浓度依次为座头鲸
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来源期刊
CiteScore
7.00
自引率
2.50%
发文量
63
审稿时长
8-16 weeks
期刊介绍: Archives of Environmental Contamination and Toxicology provides a place for the publication of timely, detailed, and definitive scientific studies pertaining to the source, transport, fate and / or effects of contaminants in the environment. The journal will consider submissions dealing with new analytical and toxicological techniques that advance our understanding of the source, transport, fate and / or effects of contaminants in the environment. AECT will now consider mini-reviews (where length including references is less than 5,000 words), which highlight case studies, a geographic topic of interest, or a timely subject of debate. AECT will also consider Special Issues on subjects of broad interest. The journal strongly encourages authors to ensure that their submission places a strong emphasis on ecosystem processes; submissions limited to technical aspects of such areas as toxicity testing for single chemicals, wastewater effluent characterization, human occupation exposure, or agricultural phytotoxicity are unlikely to be considered.
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