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噪声暴露时间制度对斑马鱼听觉系统和行为应激的影响。

The effect of time regime in noise exposure on the auditory system and behavioural stress in the zebrafish.

机构信息

Institute of Science and Environment, University of Saint Joseph, Macau, S.A.R., China.

出版信息

Sci Rep. 2022 Sep 12;12(1):15353. doi: 10.1038/s41598-022-19573-y.

Abstract

Anthropogenic noise of variable temporal patterns is increasing in aquatic environments, causing physiological stress and sensory impairment. However, scarce information exists on exposure effects to continuous versus intermittent disturbances, which is critical for noise sustainable management. We tested the effects of different noise regimes on the auditory system and behaviour in the zebrafish (Danio rerio). Adult zebrafish were exposed for 24 h to either white noise (150 ± 10 dB re 1 μPa) or silent control. Acoustic playbacks varied in temporal patterns-continuous, fast and slow regular intermittent, and irregular intermittent. Auditory sensitivity was assessed with Auditory Evoked Potential recordings, revealing hearing loss and increased response latency in all noise-treated groups. The highest mean threshold shifts (c. 13 dB) were registered in continuous and fast intermittent treatments, and no differences were found between regular and irregular regimes. Inner ear saccule did not reveal significant hair cell loss but showed a decrease in presynaptic Ribeye b protein especially after continuous exposure. Behavioural assessment using the standardized Novel Tank Diving assay showed that all noise-treated fish spent > 98% time in the bottom within the first minute compared to 82% in control, indicating noise-induced anxiety/stress. We provide first data on how different noise time regimes impact a reference fish model, suggesting that overall acoustic energy is more important than regularity when predicting noise effects.

摘要

人为的、时变的噪声在水生环境中不断增加,对水生生物造成生理压力和感官损伤。然而,关于连续和间歇干扰暴露效应的信息却很匮乏,这对于噪声的可持续管理至关重要。我们测试了不同噪声条件对斑马鱼听觉系统和行为的影响。成年斑马鱼在 150±10dB re 1 μPa 的白噪声或安静对照下暴露 24 小时。声回放具有不同的时变模式——连续、快速和慢速规则间歇以及不规则间歇。通过听觉诱发电位记录评估听觉敏感性,结果显示所有噪声处理组的听力损失和反应潜伏期增加。在连续和快速间歇处理中,平均阈值偏移最大(约 13dB),而在规则和不规则间歇处理中没有差异。内耳椭圆囊没有显示出明显的毛细胞损失,但在前突触 Ribeye b 蛋白减少,尤其是在连续暴露后。使用标准化的新水槽潜水试验进行行为评估显示,与对照组的 82%相比,所有噪声处理组的鱼在最初的一分钟内有 >98%的时间在底部,表明噪声引起了焦虑/应激。我们首次提供了关于不同噪声时间模式如何影响参考鱼类模型的信息,表明在预测噪声效应时,总声能量比规律性更重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a06e/9468136/c4048c7a86f4/41598_2022_19573_Fig1_HTML.jpg

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