Lari Ebrahim, Razmara Parastoo, Bogart Sarah J, Azizishirazi Ali, Pyle Greg G
Department of Biological Sciences, University of Lethbridge, Lethbridge, AB T1K 3M4, Canada.
Department of Biological Sciences, University of Lethbridge, Lethbridge, AB T1K 3M4, Canada.
Chemosphere. 2019 Feb;216:117-123. doi: 10.1016/j.chemosphere.2018.10.079. Epub 2018 Oct 13.
While the toxic effects of several substances on fish olfaction are well known, studies on how water chemistry affects contaminant-induced olfactory toxicity are rare. In the present study, the effect of water pH or Na concentration on fish olfactory response and Cu-induced olfactory toxicity was investigated. Also, the effects of two sodium salts, NaCl and NaNO, on olfaction were studied. Juvenile rainbow trout were exposed to 6 and 32 μg/L Cu, each under five different conditions (pH 9, pH 6.5, 20 or 40 mg/L sodium added, or culture water), for 10 days before characterizing fish olfactory response using electro-olfactography (EOG). The results demonstrated that reducing the pH to 6.5 or adding 20 or 40 mg/L Na impairs the fish response to a standard olfactory cue. None of the water treatments were protective against, or synergic with, the toxic effect of Cu on the olfactory system. Of the two Na salts, NaCl caused significantly higher impairment than NaNO. The results of the present study demonstrate that water quality modifies contaminant-induced olfactory toxicity, but differently than what is known for other tissues (i.e. gill).
虽然几种物质对鱼类嗅觉的毒性作用已为人所知,但关于水化学如何影响污染物诱导的嗅觉毒性的研究却很少。在本研究中,研究了水的pH值或钠浓度对鱼类嗅觉反应以及铜诱导的嗅觉毒性的影响。此外,还研究了两种钠盐(氯化钠和硝酸钠)对嗅觉的影响。在使用电子嗅觉图(EOG)表征鱼类嗅觉反应之前,将幼年虹鳟鱼暴露于6和32μg/L的铜中,每种浓度分别处于五种不同条件下(pH 9、pH 6.5、添加20或40mg/L钠或养殖用水),持续10天。结果表明,将pH值降至6.5或添加20或40mg/L的钠会损害鱼类对标准嗅觉线索的反应。没有一种水处理对铜对嗅觉系统的毒性作用具有保护作用或协同作用。在这两种钠盐中,氯化钠造成的损害明显高于硝酸钠。本研究结果表明,水质会改变污染物诱导的嗅觉毒性,但其方式与其他组织(如鳃)不同。