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两错能否成正?有关环境硒-汞相互作用的持续不确定性。

Do Two Wrongs Make a Right? Persistent Uncertainties Regarding Environmental Selenium-Mercury Interactions.

机构信息

Department of Biology, Duke University, Durham, North Carolina 27708, United States.

U.S. Geological Survey, Columbia Environmental Research Center, Columbia, Missouri 65201, United States.

出版信息

Environ Sci Technol. 2020 Aug 4;54(15):9228-9234. doi: 10.1021/acs.est.0c01894. Epub 2020 Jul 20.

Abstract

Mercury (Hg) is a pervasive environmental pollutant and contaminant of concern for both people and wildlife that has been a focus of environmental remediation efforts for decades. A growing body of literature has motivated calls for revising Hg consumption advisories to co-consider selenium (Se) levels in seafood and implies that remediating aquatic ecosystems with ecosystem-scale Se additions could be a robust solution to Hg contamination. Provided that elevated Se concentrations are also known toxicological threats to aquatic animals, we performed a literature search to evaluate the strength of evidence supporting three assertions underpinning the ameliorating benefits of Se: (1) dietary Se reduces MeHg toxicity in consumers; (2) environmental Se reduces Hg bioaccumulation and biomagnification in aquatic food webs; and (3) Se inhibits Hg bioavailability to, and/or methylmercury production by, microbial communities. Limited or ambiguous support for each criterion indicates that many scientific uncertainties and gaps remain regarding Se mediation of Hg behavior and toxicity in abiotic and biotic compartments. Significantly more information is needed to provide a strong scientific basis for modifying current fish consumption advisories on the basis of Se:Hg ratios or for applying Se amendments to remediate Hg-contaminated ecosystems.

摘要

汞 (Hg) 是一种普遍存在的环境污染物和关注的污染物,对人类和野生动物都有影响,几十年来一直是环境修复工作的重点。越来越多的文献促使人们呼吁修改汞消费建议,同时考虑海产品中的硒 (Se) 水平,并暗示用生态系统规模的 Se 增加来修复水生生态系统可能是解决 Hg 污染的一种有效方法。如果升高的 Se 浓度对水生动物也是已知的毒理学威胁,我们进行了文献检索,以评估支持 Se 缓解作用的三个断言的证据强度:(1) 膳食 Se 降低消费者体内 MeHg 的毒性;(2) 环境 Se 降低水生食物网中 Hg 的生物积累和生物放大;(3) Se 抑制微生物群落中 Hg 的生物利用度和/或甲基汞的生成。对于每个标准,有限或模糊的支持表明,关于 Se 对非生物和生物成分中 Hg 行为和毒性的介导作用仍然存在许多科学不确定性和差距。需要更多的信息来为基于 Se:Hg 比例修改当前的鱼类消费建议或为修复 Hg 污染的生态系统应用 Se 添加剂提供强有力的科学依据。

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