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水化学和天然有机物对虹鳟(Oncorhynchus mykiss)鳃对无机汞的主动和被动摄取的影响。

Influence of water chemistry and natural organic matter on active and passive uptake of inorganic mercury by gills of rainbow trout (Oncorhynchus mykiss).

作者信息

Klinck Joel, Dunbar Michael, Brown Stephanie, Nichols Joel, Winter Anna, Hughes Christopher, Playle Richard C

机构信息

Department of Biology, Wilfrid Laurier University, Waterloo, Ont., Canada, N2L 3C5.

出版信息

Aquat Toxicol. 2005 Mar 25;72(1-2):161-75. doi: 10.1016/j.aquatox.2004.11.013. Epub 2004 Dec 30.

Abstract

To distinguish physiologically regulated uptake from passive uptake of inorganic Hg in fish, rainbow trout (Oncorhynchus mykiss) were exposed to inorganic Hg (0.5, 1, or 2 microM total Hg) in ion-poor water with various treatments. Addition of ions to the water (mM concentrations of Ca, K, Cl) did not consistently alter Hg accumulation by trout gills, although there was a trend to higher Hg accumulation at higher ion concentrations. The apical Ca channel blockers Verapamil and lanthanum also did not consistently affect Hg accumulation by trout gills. Pre-treatment of trout with the Na channel blocker Phenamil decreased Hg uptake by about half. These results suggest a combination of physiologically regulated and passive uptake of Hg by trout gills. Strong complexing agents of Hg (EDTA, NTA, ethylenediamine, cysteine) decreased Hg-binding by trout gills in a dose-dependent manner. From these data, a conditional equilibrium binding constant for Hg to the gills was estimated as logK(Hg-gill) = 18.0, representing very strong binding of Hg to the gills. This value is a first step in creating a biotic ligand model (BLM) for inorganic Hg and fish. Natural organic matter (2-10 mg C/L) also decreased Hg-binding by trout gills, although mM concentrations of Na, K, and Cl interfered with this effect. At low concentrations of these ions, natural organic matter samples isolated from various sources bound Hg to similar degrees, as judged by Hg accumulation by trout gills. A conditional binding constant to natural organic matter (NOM) was estimated as logK(Hg-NOM) = 18.0 with about 0.5 micromol binding sites per mg C, representing strong binding of Hg to NOM.

摘要

为了区分鱼类中无机汞的生理调节摄取和被动摄取,虹鳟(Oncorhynchus mykiss)在离子贫乏的水中接受各种处理,并暴露于无机汞(总汞浓度为0.5、1或2 microM)中。向水中添加离子(Ca、K、Cl的mM浓度)并没有持续改变虹鳟鳃对汞的积累,尽管在较高离子浓度下有汞积累增加的趋势。顶端钙通道阻滞剂维拉帕米和镧也没有持续影响虹鳟鳃对汞的积累。用钠通道阻滞剂非那明预处理虹鳟可使汞摄取减少约一半。这些结果表明虹鳟鳃对汞的摄取是生理调节和被动摄取的结合。汞的强络合剂(EDTA、NTA、乙二胺、半胱氨酸)以剂量依赖的方式降低了虹鳟鳃对汞的结合。根据这些数据,估计汞与鳃的条件平衡结合常数为logK(Hg-鳃)=18.0,这表明汞与鳃的结合非常强。该值是创建无机汞和鱼类的生物配体模型(BLM)的第一步。天然有机物(2-10 mg C/L)也降低了虹鳟鳃对汞的结合,尽管mM浓度的Na、K和Cl会干扰这种作用。在这些离子的低浓度下,从不同来源分离的天然有机物样品对汞的结合程度相似,这通过虹鳟鳃对汞的积累来判断。估计汞与天然有机物(NOM)的条件结合常数为logK(Hg-NOM)=18.0,每毫克C约有0.5微摩尔结合位点,这表明汞与NOM的结合很强。

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