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天然有机物(NOM)质量对虹鳟(Oncorhynchus mykiss)铜鳃结合的影响。

Influence of natural organic matter (NOM) quality on Cu-gill binding in the rainbow trout (Oncorhynchus mykiss).

机构信息

Department of Biology, Wilfrid Laurier University, 75 University Avenue West, Waterloo, Ontario N2L3C5, Canada.

出版信息

Aquat Toxicol. 2010 May 10;97(4):343-52. doi: 10.1016/j.aquatox.2010.01.003. Epub 2010 Feb 4.

Abstract

Natural organic matter (NOM) in aquatic environments reduces metal toxicity to fish by forming metal-NOM complexes, which reduce metal bioavailability, metal-gill binding and toxicity. However, differences in the chemical composition of different types of NOM (quality) could also affect metal-NOM binding and toxicity. We predicted that Cu-gill binding would vary in trout exposed to Cu in the presence of NOM of different qualities. NOM was collected from three sources: Luther Marsh (terrigenous approximately allochthonous), Bannister Lake (nominally autochthonous), and from a local sewage treatment plant (designated Preston effluent). Excitation-emission matrix spectroscopy (EEMS) revealed that terrigenous Luther Marsh NOM was primarily humic acid-like material (74%), whereas Bannister Lake and Preston sewage effluent NOM had lower humic acid-like material but greater fulvic acid-like material (30% and 50%, respectively). The specific absorption coefficient (SAC) of Luther Marsh NOM was also much higher (SAC=37.8), consistent with its darker color, compared to more autochthonous, lightly coloured Bannister Lake (SAC=12.4) NOM, and Preston effluent NOM (SAC=9.2). At low-moderate waterborne Cu (0-2,000 nmol L(-1)), all NOM isolates reduced Cu-gill accumulation by 70-90%. Surprisingly, there were no measurable differences in Cu-gill binding amongst the three NOM treatments when fish were exposed to Cu in the low-moderate range. Only at higher Cu (>2,000 nmol L(-1)) were differences observed, where terrigenous Luther Marsh and Preston effluent NOM reduced Cu-gill binding by 40-50% more than the more autochthonous Bannister Lake NOM. Although Cu-gill binding estimates using the HydroQual BLM showed similar trends, the BLM consistently underestimated Cu-gill binding. We conclude that differences in Cu toxicity at lower-moderate Cu concentrations in the presence of different types of NOM are not necessarily related to measurable differences in Cu-gill accumulation. Rather, we suggest that differences in Cu toxicity reported in the presence of different types of NOM might be explained by direct actions of NOM on the gills, which are quality dependent.

摘要

天然有机物(NOM)在水生环境中通过形成金属-NOM 配合物来降低金属对鱼类的毒性,从而降低金属的生物利用度、金属与鳃的结合和毒性。然而,不同类型的 NOM(质量)的化学成分差异也会影响金属-NOM 结合和毒性。我们预测,在存在不同质量 NOM 的情况下,暴露于 Cu 的鳟鱼的 Cu-鳃结合会有所不同。NOM 是从三个来源收集的:Luther Marsh(陆地的,几乎是异源的)、Bannister Lake(名义上是同源的)和当地的污水处理厂(指定为 Preston 污水)。激发发射矩阵光谱(EEMS)显示,陆地 Luther Marsh NOM 主要是腐殖酸样物质(74%),而 Bannister Lake 和 Preston 污水厂 NOM 的腐殖酸样物质较少,但富里酸样物质较多(分别为 30%和 50%)。与更同源、颜色较浅的 Bannister Lake(SAC=12.4)NOM 和 Preston 污水厂 NOM(SAC=9.2)相比,Luther Marsh NOM 的比吸收系数(SAC)也高得多(SAC=37.8)。在低中等水基 Cu(0-2000nmol L(-1))范围内,所有 NOM 分离物将 Cu-鳃积累减少了 70-90%。令人惊讶的是,当鱼类在低中等 Cu 范围内暴露时,三种 NOM 处理之间没有测量到 Cu-鳃结合的差异。只有在更高的 Cu(>2000nmol L(-1))时才观察到差异,其中陆地 Luther Marsh 和 Preston 污水厂 NOM 将 Cu-鳃结合减少了 40-50%,比更同源的 Bannister Lake NOM 多。尽管使用 HydroQual BLM 进行的 Cu-鳃结合估计显示出相似的趋势,但 BLM 始终低估了 Cu-鳃结合。我们得出的结论是,在存在不同类型的 NOM 的情况下,较低中等 Cu 浓度下 Cu 毒性的差异不一定与可测量的 Cu-鳃积累差异有关。相反,我们认为,在存在不同类型的 NOM 的情况下报告的 Cu 毒性差异可能是由于 NOM 对鳃的直接作用造成的,而这种作用取决于质量。

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