回避、困惑还是孤独?模拟噪声污染如何影响鲸鱼迁徙

IF 3.4 1区 生物学 Q2 ECOLOGY
Stuart T Johnston, Kevin J Painter
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引用次数: 0

摘要

许多须鲸以其声学通讯而闻名。在原始条件下,这种交流可以跨越数百公里。频繁的发声可以让分散迁徙的鲸群保持联系,从而通过 "群策群力 "改善导航。人类活动大大提高了海洋噪音水平。在此,我们建立了一个数据驱动的数学模型,以研究环境噪声水平如何抑制鲸鱼迁徙。通过数学模型,我们可以同时模拟鲸鱼的集体迁徙行为、听觉线索探测和噪声传播。假设环境噪声水平的上升会通过三种机制影响鲸鱼的洄游行为:(i) 缩小交流空间;(ii) 降低鲸鱼听到外部声音线索的能力;(iii) 触发鲸鱼的噪声规避行为。对比原始声景和当前声景,我们观察到导航障碍的程度从轻微(行程时间增加)到极端(导航失败)不等。值得注意的是,这三种机制对迁徙行为的影响在本质上是不同的。我们展示了该模型的潜在预测能力,探讨了在未来航运和建筑情况下,迁徙行为可能发生改变的程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Avoidance, confusion or solitude? Modelling how noise pollution affects whale migration.

Many baleen whales are renowned for their acoustic communication. Under pristine conditions, this communication can plausibly occur across hundreds of kilometres. Frequent vocalisations may allow a dispersed migrating group to maintain contact, and therefore benefit from improved navigation via the "wisdom of the crowd". Human activities have considerably inflated ocean noise levels. Here we develop a data-driven mathematical model to investigate how ambient noise levels may inhibit whale migration. Mathematical models allow us to simultaneously simulate collective whale migration behaviour, auditory cue detection, and noise propagation. Rising ambient noise levels are hypothesised to influence navigation through three mechanisms: (i) diminished communication space; (ii) reduced ability to hear external sound cues and; (iii) triggering noise avoidance behaviour. Comparing pristine and current soundscapes, we observe navigation impairment that ranges from mild (increased journey time) to extreme (failed navigation). Notably, the three mechanisms induce qualitatively different impacts on migration behaviour. We demonstrate the model's potential predictive power, exploring the extent to which migration may be altered under future shipping and construction scenarios.

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来源期刊
Movement Ecology
Movement Ecology Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.60
自引率
4.90%
发文量
47
审稿时长
23 weeks
期刊介绍: Movement Ecology is an open-access interdisciplinary journal publishing novel insights from empirical and theoretical approaches into the ecology of movement of the whole organism - either animals, plants or microorganisms - as the central theme. We welcome manuscripts on any taxa and any movement phenomena (e.g. foraging, dispersal and seasonal migration) addressing important research questions on the patterns, mechanisms, causes and consequences of organismal movement. Manuscripts will be rigorously peer-reviewed to ensure novelty and high quality.
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