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规律噪声和随机噪声对大西洋鳕鱼幼鱼行为、生长和发育的影响。

Impacts of regular and random noise on the behaviour, growth and development of larval Atlantic cod (Gadus morhua).

作者信息

Nedelec Sophie L, Simpson Stephen D, Morley Erica L, Nedelec Brendan, Radford Andrew N

机构信息

School of Biological Sciences, University of Bristol, Life Sciences Building, 24 Tyndall Avenue, Bristol BS8 1TQ, UK USR 3278 CRIOBE CNRS-EPHE-UPVD, CRIOBE BP 1013 Moorea, 98729 Polynesie Francaise, UK

Biosciences, College of Life and Environmental Sciences, University of Exeter, Stocker Road, Exeter EX4 4QD, UK.

出版信息

Proc Biol Sci. 2015 Oct 22;282(1817):20151943. doi: 10.1098/rspb.2015.1943.

Abstract

Anthropogenic noise impacts behaviour and physiology in many species, but responses could change with repeat exposures. As repeat exposures can vary in regularity, identifying regimes with less impact is important for regulation. We use a 16-day split-brood experiment to compare effects of regular and random acoustic noise (playbacks of recordings of ships), relative to ambient-noise controls, on behaviour, growth and development of larval Atlantic cod (Gadus morhua). Short-term noise caused startle responses in newly hatched fish, irrespective of rearing noise. Two days of both regular and random noise regimes reduced growth, while regular noise led to faster yolk sac use. After 16 days, growth in all three sound treatments converged, although fish exposed to regular noise had lower body width-length ratios. Larvae with lower body width-length ratios were easier to catch in a predator-avoidance experiment. Our results demonstrate that the timing of acoustic disturbances can impact survival-related measures during development. Much current work focuses on sound levels, but future studies should consider the role of noise regularity and its importance for noise management and mitigation measures.

摘要

人为噪声会影响许多物种的行为和生理机能,但反复接触后反应可能会发生变化。由于反复接触的规律可能各不相同,识别影响较小的模式对于监管很重要。我们进行了一项为期16天的分窝实验,比较了相对于环境噪声对照组,规律和随机声学噪声(船舶录音回放)对大西洋鳕鱼幼鱼行为、生长和发育的影响。短期噪声会使新孵化的鱼产生惊吓反应,与饲养噪声无关。规律和随机噪声模式持续两天都会降低生长速度,而规律噪声会导致卵黄囊消耗更快。16天后,三种声音处理方式下的生长情况趋于一致,尽管暴露于规律噪声下的鱼体宽与体长的比例较低。在躲避捕食者实验中,体宽与体长比例较低的幼鱼更容易被捕食。我们的结果表明,声学干扰的时间会影响发育过程中与生存相关的指标。目前许多工作都集中在声级上,但未来的研究应考虑噪声规律的作用及其对噪声管理和缓解措施的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d73a/4633878/20152d2e2045/rspb20151943-g1.jpg

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