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The effect of hypoxia on fish schooling

机译:缺氧对鱼类教育的影响

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Low-oxygen areas are expanding in the oceans as a result of climate change. Work carried out during the past two decades suggests that, in addition to impairing basic physiological functions, hypoxia can also affect fish behaviour. Given that many fish species are known to school, and that schooling is advantageous for their survival, the effect of hypoxia on schooling behaviour may have important ecological consequences. Here, we review the effects of hypoxia on school structure and dynamics, together with the mechanisms that cause an increase in school volume and that ultimately lead to school disruption. Furthermore, the effect of hypoxia generates a number of trade-offs in terms of schooling positions and school structure. Field observations have found that large schools of fish can exacerbate hypoxic conditions, with potential consequences for school structure and size. Therefore, previous models that predict the maximum size attainable by fish schools in relation to oxygen levels are also reviewed. Finally, we suggest that studies on the effect of hypoxia on schooling need to be integrated with those on temperature and ocean acidifications within a framework aimed at increasing our ability to predict the effect of multiple stressors of climate change on fish behaviour.
机译:由于气候变化,低氧地区正在海洋中扩展。在过去二十年中进行的工作表明,除了损害基本生理功能外,缺氧也会影响鱼类行为。鉴于许多鱼类是学校所知的,并且教育对他们的生存是有利的,缺氧对教育行为的影响可能具有重要的生态后果。在这里,我们审查了缺氧对学校结构和动态的影响,以及导致学校数量增加的机制,最终导致学校中断。此外,缺氧的效果在教育职位和学校结构方面产生了一些权衡。现场观察发现,大型鱼类可以加剧缺氧条件,具有学校结构和规模的潜在后果。因此,还综述了预测鱼类学校与氧水平有关的最大尺寸的先前模型。最后,我们建议对缺氧对学校教育的影响的研究需要与框架内的温度和海洋酸化的效果相结合,旨在提高我们预测气候变化对鱼类的多重压力源的影响。

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