Wageningen Marine Research, Wageningen University & Research, Ijmuiden, The Netherlands.
Institute for Biodiversity and Ecosystem dynamics, University of Amsterdam, Amsterdam, The Netherlands.
Proc Biol Sci. 2020 Jun 24;287(1929):20200490. doi: 10.1098/rspb.2020.0490. Epub 2020 Jun 17.
Anthropogenic underwater noise may negatively affect marine animals. Yet, while fishes are highly sensitive to sounds, effects of acoustic disturbances on fishes have not been extensively studied at the population level. In this study, we use a size-structured model based on energy budgets to analyse potential population-level effects of anthropogenic noise on Atlantic cod (). Using the model framework, we assess the impact of four possible effect pathways of disturbance on the cod population growth rate. Through increased stress, changes in foraging and movement behaviour, and effects on the auditory system, anthropogenic noise can lead to (i) increased energy expenditure, (ii) reduced food intake, (iii) increased mortality, and (iv) reduced reproductive output. Our results show that population growth rates are particularly sensitive to changes in energy expenditure and food intake because they indirectly affect the age of maturation, survival and fecundity. Sub-lethal effects of sound exposure may thus affect populations of cod and fishes with similar life histories more than lethal effects of sound exposure. Moreover, anthropogenic noise may negatively affect populations when causing persistent increases of energy expenditure or decreases of food intake. Effects of specific acoustic pollutants on energy acquisition and expenditure should therefore be further investigated.
人为水下噪声可能会对海洋动物产生负面影响。然而,鱼类对声音非常敏感,但在种群水平上,声学干扰对鱼类的影响尚未得到广泛研究。在本研究中,我们使用基于能量预算的大小结构模型来分析人为噪声对大西洋鳕鱼()种群水平的潜在影响。我们使用模型框架评估了干扰的四种可能影响途径对鳕鱼种群增长率的影响。人为噪声可通过增加压力、改变觅食和移动行为以及对听觉系统的影响,导致(i)能量消耗增加,(ii)食物摄入减少,(iii)死亡率增加和(iv)繁殖产出减少。研究结果表明,种群增长率对能量消耗和食物摄入的变化特别敏感,因为它们间接影响成熟、存活和繁殖的年龄。因此,与声音暴露的致死效应相比,声音暴露的亚致死效应可能对具有相似生活史的鳕鱼和鱼类种群产生更大的影响。此外,当人为噪声导致能量消耗持续增加或食物摄入持续减少时,可能会对种群产生负面影响。因此,应进一步研究特定声污染物对能量获取和消耗的影响。