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Ship noise and cortisol secretion in European freshwater fishes

机译:欧洲淡水鱼类的船舶噪声和皮质醇分泌

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Underwater noise pollution is a growing problem in aquatic environments and as such may be a major source of stress for fish. In the present study, we addressed the effects of ship noise and continuous Gaussian noise on adrenal activity in three European freshwater species. Underwater ship noise recorded in the Danube River and two Austrian lakes was played back to fish at levels encountered in the field (153 dB re 1 mu Pa, 30 min). Post exposure cortisol secretion was compared with control situations. Cortisol was measured with enzyme immunoassay techniques (EIA, ng cortisol/l water/g fish) in extracted aquarium water with corrections for fish mass. In the first series, two hearing specialists, the common carp (Cyprinus carpio) and the gudgeon (Gobio gobio) and one hearing generalist, the European perch (Perca fluviatilis) were exposed to ship noise. The noise level was well above hearing thresholds in these species. In a second series, fish were exposed to continuous Gaussian noise at a similar level (156 dB) which is known to induce temporary hearing loss in hearing specialists. All three species responded with increased cortisol secretion when exposed to ship noise. Interestingly, no elevation was observed when fish were exposed to continuous Gaussian noise. Our results indicate that ship noise characterized by amplitude and frequency fluctuations, constitutes a potential stressor in contrast to continuous noise. Surprisingly, the data also demonstrate no apparent differences between species possessing excellent hearing abilities (hearing specialists) and species with poor hearing abilities like perch.
机译:水下噪声污染在水生环境中是一个日益严重的问题,因此可能是鱼类承受压力的主要来源。在本研究中,我们研究了三种欧洲淡水物种中船舶噪声和持续高斯噪声对肾上腺活动的影响。在多瑙河和两个奥地利湖泊中记录的水下船舶噪音以在田间遇到的水平被回放到鱼类身上(153分贝,每亩1亩,30分钟)。将暴露后皮质醇的分泌与对照情况进行比较。皮质醇通过酶免疫测定技术(EIA,ng皮质醇/ l水/ g鱼)在提取的水族馆水中进行测量,并校正了鱼的质量。在第一个系列中,两名听力专家,鲤鱼(Cyprinus carpio)和the鱼(Gobio gobio),以及一名听力专家,欧洲鲈鱼(Perca fluviatilis)暴露在船上。这些物种的噪音水平远高于听力阈值。在第二个系列中,将鱼暴露在相似水平(156 dB)的连续高斯噪声下,已知这会导致听力专家暂时性听力损失。当暴露于船​​舶噪音中时,这三个物种的皮质醇分泌均增加。有趣的是,当鱼暴露于连续的高斯噪声中时,没有观察到海拔升高。我们的结果表明,与连续噪声相比,以振幅和频率波动为特征的船舶噪声构成潜在的压力源。令人惊讶的是,数据还表明,具有出色听力能力的物种(听力专家)与诸如鲈鱼等听力能力较差的物种之间没有明显差异。

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