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美国东南部河流鱼类种群中的汞与水体类型有关。

Mercury in southeastern U.S. riverine fish populations linked to water body type.

作者信息

Rypel Andrew L, Arrington D Albrey, Findlay Robert H

机构信息

Department of Biological Sciences, University of Alabama, Box 870206, Tuscaloosa, Alabama 35487, USA.

出版信息

Environ Sci Technol. 2008 Jul 15;42(14):5118-24. doi: 10.1021/es8001772.

Abstract

We compared Hg concentrations in fishes from the regulated Black Warrior River and the unregulated Sipsey River in west Alabama whose neighboring watersheds receive equivalent atmospheric Hg deposition. Average fish fillet Hg concentrations were 3-fold higher in the unregulated river compared to the regulated river. Between river differences in Hg fish concentrations likely originate from structural (e.g., species composition) and functional (e.g., energy flow pathways) differences between the two ecosystems. We tested the generality of these findings by comparing largemouth bass Hg concentrations among unregulated rivers (n=6) and reservoirs (n=11) throughout the southern Coastal Plain geologic region. ANCOVA revealed that at a given bass length, Hg concentrations were approximately 1.75 times higher in unregulated rivers compared to regulated rivers. Aerial deposition of Hg was not correlated to largemouth bass Hg concentrations. We suggest that the link between atmospheric Hg deposition and fish Hg concentrations is significantly modulated by the structure and function of aquatic ecosystems and this accounts for much of the variation in fish Hg concentrations among systems. Unregulated floodplain-rivers in the south have some of the highest fish Hg concentrations on record and should be intensely monitored to establish human consumption risks.

摘要

我们比较了阿拉巴马州西部受管制的布莱克沃里尔河以及未受管制的西普西河中的鱼类汞浓度,这两条河相邻的流域接收等量的大气汞沉降。与受管制的河流相比,未受管制的河流中鱼肉的平均汞浓度高出3倍。两条河流之间鱼类汞浓度的差异可能源于两个生态系统在结构(如物种组成)和功能(如能量流动途径)上的差异。我们通过比较整个南部沿海平原地质区域未受管制的河流(n = 6)和水库(n = 11)中的大口黑鲈汞浓度,来检验这些发现的普遍性。协方差分析表明,在大口黑鲈长度给定的情况下,与受管制的河流相比,未受管制的河流中汞浓度高出约1.75倍。汞的大气沉降与大口黑鲈的汞浓度无关。我们认为,大气汞沉降与鱼类汞浓度之间的联系受到水生生态系统结构和功能的显著调节,这解释了不同系统间鱼类汞浓度的大部分差异。南部未受管制的漫滩河流中鱼类汞浓度达到了有记录以来的最高水平,应对其进行严格监测,以确定人类食用风险。

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