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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Mercury bioaccumulation increases with latitude in a coastal marine fish (Atlantic silverside, Menidia menidia)
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Mercury bioaccumulation increases with latitude in a coastal marine fish (Atlantic silverside, Menidia menidia)

机译:水星生物积累随着沿海海洋鱼(大西洋硅藻,Metidia Metidia)的纬度增加

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摘要

Human exposure to the neurotoxic methylmercury (MeHg) occurs primarily via the consumption of marine fish, but the processes underlying large-scale spatial variations in fish MeHg concentrations [MeHg], which influence human exposure, are not sufficiently understood. We used the Atlantic silverside (Menidia menidia), an extensively studied model species and important forage fish, to examine latitudinal patterns in total mercury (Hg) [Hg] and [MeHg]. Both [Hg] and [MeHg] significantly increased with latitude (0.014 and 0.048 mu g MeHg.g dry weight(-1) per degree of latitude in juveniles and adults, respectively). Four known latitudinal trends in silverside traits help explain these patterns: latitudinal increase in MeHg assimilation efficiency, latitudinal decrease in MeHg efflux, latitudinal increase in weight loss due to longer and more severe winters, and latitudinal increase in food consumption as an adaptation to decreasing length of the growing season. Given the absence of a latitudinal pattern in particulate MeHg, a diet proxy for zooplanktivorous fish, we conclude that large-scale spatial variation in growth is the primary control of Hg bioaccumulation in this and potentially other fish species.
机译:人体暴露于神经毒性甲基汞(MEHG)主要通过海洋鱼的消费来发生,但是在影响人体暴露的鱼Mehg浓度[Mehg]中的大规模空间变化的过程并不能充分理解。我们使用了大西洋硅藻(MENIDIA MENIDIA),广泛研究的模型物种和重要的牧草鱼,检查总汞(HG)[Hg]和[Mehg]的纬度模式。 [Hg]和[Mehg]均显着增加,纬度显着增加(0.014和0.048μgmehg.g每次纬度的干重(-1),在青少年和成年人中)。四种已知的纬度趋势在银渣性状性质中有助于解释这些模式:延迟增加MEHG同化效率,延迟减少Mehg Efflux,由于更长,更严重的冬季而导致的减肥延迟增加,以及延迟增加食物消耗,以减少长度的适应性不断增长的季节。鉴于颗粒态度的纬度模式缺失,浮游动物的饮食代理,我们得出结论,增长的大规模空间变化是肝脏生物累积的主要控制,潜在的其他鱼类。

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