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Mercury bioaccumulation in zooplankton and its relationship with eutrophication in the waters in the karst region of Guizhou Province, Southwest China

机译:浮游动物的汞生物累积及其与贵州喀斯特地区水域富营养化的关系,中国西南部

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Zooplankton play an important role in the transfer of mercury (Hg) from the lower to upper trophic positions in the food chain. In this study, total mercury (THg) and methylmercury (MeHg) levels were measured in three size fractions of zooplankton collected from three reservoirs (Hongfeng, Baihua, and Aha Reservoir) and one wetland in karst areas to understand mercury accumulation in zooplankton from alkaline environments. The results showed that the alkaline waters had lower zooplankton MeHg levels (0.1 to 66.8 ng g(-1)) than most of the acidic waters reported. However, the zooplankton THg levels (6.3 to 494.9 ng g(-1)) were comparable. The macro-zooplankton (> 500 mu m) had significantly higher THg and MeHg levels than meso-zooplankton (116 to 500 mu m) in the three reservoirs at all seasons, which showed biomagnification of mercury in the food chain. The correlation between Hg in water and zooplankton and Hg in zooplankton of different sizes indicated that THg bioaccumulation in zooplankton was related to the THg levels in water; however, MeHg bioaccumulation in zooplankton was controlled by many other factors, such as their feeding and living habits. In the three reservoirs, the THg and MeHg concentrations in zooplankton decreased with increasing eutrophication. However, compared with the three reservoirs, Caohai Wetland, with large amounts of aquatic plants, had a much lower trophic level and higher MeHg content in water but much lower zooplankton MeHg levels and bioaccumulation factors (BAFs). The large amounts of plant residue might dilute mercury in the food chain, revealing that high primary production could result in lower Hg bioaccumulation, rather than only being influenced by nutrient levels.
机译:浮游生道在食物链中从下部到上部营养位置转移汞(Hg)的重要作用。在这项研究中,在从三个水库(宏峰,白华和Aha水库)和喀斯特地区的一个湿地中,在从三个储存器(洪峰,白华和Aha水库)和喀斯特地区的一个湿地中测量了总汞(THG)和甲基汞(MEHG)水平,以了解玉米碱中浮游动物的汞积累环境。结果表明,碱水水平较低的Zooplankton MeHg水平(0.1至66.8ng(-1)),而不是报道的大多数酸性水。然而,浮游植物THG水平(6.3至494.9 ng(-1))可比较。在所有季节的三个储存器中,宏观佐头(> 500亩M)显着高于Meso-Zooplon(116至500亩)的近距离水平,这在食物链中显示了汞的生物镀金。不同尺寸的水中Hg和Zooplankton和Hg之间的相关性表明Zooplankton中的BioAccumulatulatulatulation与水中的THG水平有关;然而,浮游动物的Mehg生物累积被许多其他因素控制,例如他们的喂养和生活习惯。在三个水库中,随着富营养化的增加,浮游植物中的THG和MEHG浓度降低。然而,与三个水库,漕人湿地具有大量水生植物,在水中具有更低的营养水平和较高的MEHG含量,但Zooplankton MEHG水平和生物累积因子(BAF)。大量的植物残留物可能会在食物链中稀释汞,揭示高初级产量可能导致Hg生物累积较低,而不是仅受营养水平的影响。

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