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汞在亚洲以水稻为主的食物网中的流动。

Mercury flow through an Asian rice-based food web.

作者信息

Abeysinghe Kasun S, Qiu Guangle, Goodale Eben, Anderson Christopher W N, Bishop Kevin, Evers David C, Goodale Morgan W, Hintelmann Holger, Liu Shengjie, Mammides Christos, Quan Rui-Chang, Wang Jin, Wu Pianpian, Xu Xiao-Hang, Yang Xiao-Dong, Feng Xinbin

机构信息

State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China; Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun, Mengla, Yunnan 666303, China; Guangxi Key Laboratory of Forest Ecology and Conservation (under state evaluation status), College of Forestry, Guangxi University, Nanning, Guangxi 530005, China; Graduate School of Chinese Academy of Sciences, Beijing 100049, China.

State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China.

出版信息

Environ Pollut. 2017 Oct;229:219-228. doi: 10.1016/j.envpol.2017.05.067. Epub 2017 Jun 7.

Abstract

Mercury (Hg) is a globally-distributed pollutant, toxic to humans and animals. Emissions are particularly high in Asia, and the source of exposure for humans there may also be different from other regions, including rice as well as fish consumption, particularly in contaminated areas. Yet the threats Asian wildlife face in rice-based ecosystems are as yet unclear. We sought to understand how Hg flows through rice-based food webs in historic mining and non-mining regions of Guizhou, China. We measured total Hg (THg) and methylmercury (MeHg) in soil, rice, 38 animal species (27 for MeHg) spanning multiple trophic levels, and examined the relationship between stable isotopes and Hg concentrations. Our results confirm biomagnification of THg/MeHg, with a high trophic magnification slope. Invertivorous songbirds had concentrations of THg in their feathers that were 15x and 3x the concentration reported to significantly impair reproduction, at mining and non-mining sites, respectively. High concentrations in specialist rice consumers and in granivorous birds, the later as high as in piscivorous birds, suggest rice is a primary source of exposure. Spiders had the highest THg concentrations among invertebrates and may represent a vector through which Hg is passed to vertebrates, especially songbirds. Our findings suggest there could be significant population level health effects and consequent biodiversity loss in sensitive ecosystems, like agricultural wetlands, across Asia, and invertivorous songbirds would be good subjects for further studies investigating this possibility.

摘要

汞(Hg)是一种全球分布的污染物,对人类和动物有毒。亚洲的汞排放量尤其高,而且那里人类的接触源可能也与其他地区不同,包括食用大米和鱼类,特别是在受污染地区。然而,亚洲野生动物在以水稻为基础的生态系统中面临的威胁尚不清楚。我们试图了解汞如何在中国贵州的历史采矿区和非采矿区的以水稻为基础的食物网中流动。我们测量了土壤、水稻、跨越多个营养级的38种动物物种(27种用于测量甲基汞)中的总汞(THg)和甲基汞(MeHg),并研究了稳定同位素与汞浓度之间的关系。我们的结果证实了总汞/甲基汞的生物放大作用,具有较高的营养放大斜率。食虫鸣禽羽毛中的总汞浓度在采矿区和非采矿区分别是据报道会显著损害繁殖的浓度的15倍和3倍。专食水稻的动物以及食谷鸟类中的高浓度,后者高达食鱼鸟类中的浓度,表明水稻是主要的接触源。蜘蛛在无脊椎动物中总汞浓度最高,可能是汞传递给脊椎动物,尤其是鸣禽的一个载体。我们的研究结果表明,在亚洲各地如农业湿地这样的敏感生态系统中,可能会有显著的种群水平健康影响以及随之而来的生物多样性丧失,食虫鸣禽将是进一步研究这种可能性的良好对象。

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