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圈养斑马鱼对声音暴露的行为变化以及对嘈杂环境无空间回避现象。

Behavioral changes in response to sound exposure and no spatial avoidance of noisy conditions in captive zebrafish.

作者信息

Neo Yik Yaw, Parie Lisa, Bakker Frederique, Snelderwaard Peter, Tudorache Christian, Schaaf Marcel, Slabbekoorn Hans

机构信息

Behavioral Biology, Institute of Biology (IBL), Leiden University Leiden, Netherlands.

Behavioral Biology, Institute of Biology (IBL), Leiden University Leiden, Netherlands ; Naturalis Biodiversity Center Leiden, Netherlands.

出版信息

Front Behav Neurosci. 2015 Feb 17;9:28. doi: 10.3389/fnbeh.2015.00028. eCollection 2015.

Abstract

Auditory sensitivity in fish serves various important functions, but also makes fish susceptible to noise pollution. Human-generated sounds may affect behavioral patterns of fish, both in natural conditions and in captivity. Fish are often kept for consumption in aquaculture, on display in zoos and hobby aquaria, and for medical sciences in research facilities, but little is known about the impact of ambient sounds in fish tanks. In this study, we conducted two indoor exposure experiments with zebrafish (Danio rerio). The first experiment demonstrated that exposure to moderate sound levels (112 dB re 1 μPa) can affect the swimming behavior of fish by changing group cohesion, swimming speed and swimming height. Effects were brief for both continuous and intermittent noise treatments. In the second experiment, fish could influence exposure to higher sound levels by swimming freely between an artificially noisy fish tank (120-140 dB re 1 μPa) and another with ambient noise levels (89 dB re 1 μPa). Despite initial startle responses, and a brief period in which many individuals in the noisy tank dived down to the bottom, there was no spatial avoidance or noise-dependent tank preference at all. The frequent exchange rate of about 60 fish passages per hour between tanks was not affected by continuous or intermittent exposures. In conclusion, small groups of captive zebrafish were able to detect sounds already at relatively low sound levels and adjust their behavior to it. Relatively high sound levels were at least at the on-set disturbing, but did not lead to spatial avoidance. Further research is needed to show whether zebrafish are not able to avoid noisy areas or just not bothered. Quantitatively, these data are not directly applicable to other fish species or other fish tanks, but they do indicate that sound exposure may affect fish behavior in any captive condition.

摘要

鱼类的听觉敏感性具有多种重要功能,但也使鱼类容易受到噪声污染的影响。人为产生的声音可能会影响鱼类在自然条件和圈养环境中的行为模式。鱼类常用于水产养殖以供食用、动物园和观赏水族箱展示以及研究设施中的医学研究,但人们对鱼缸中环境声音的影响知之甚少。在本研究中,我们对斑马鱼(Danio rerio)进行了两项室内暴露实验。第一个实验表明,暴露于中等声级(112 dB re 1 μPa)会通过改变群体凝聚力、游泳速度和游泳高度来影响鱼类的游泳行为。连续和间歇性噪声处理的影响都是短暂的。在第二个实验中,鱼类可以通过在人工嘈杂的鱼缸(120 - 140 dB re 1 μPa)和另一个环境噪声水平(89 dB re 1 μPa)的鱼缸之间自由游动来影响对更高声级的暴露。尽管最初有惊吓反应,并且在嘈杂鱼缸中有一段时间许多个体潜入水底,但根本没有空间回避或与噪声相关的鱼缸偏好。鱼缸之间每小时约60次的频繁交换率不受连续或间歇性暴露的影响。总之,小群体的圈养斑马鱼能够在相对较低的声级下检测到声音并据此调整其行为。相对较高的声级至少在开始时会产生干扰,但不会导致空间回避。需要进一步研究以表明斑马鱼是无法避开嘈杂区域还是只是不受影响。从数量上看,这些数据不能直接应用于其他鱼类物种或其他鱼缸,但它们确实表明声音暴露可能会在任何圈养条件下影响鱼类行为。

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