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Modelling larval dispersal and behaviour of coral reef fishes

机译:模拟珊瑚礁鱼的幼虫扩散和行为

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摘要

Coral reef fish spend their first few weeks developing in the open ocean, where eggs and larvae appear merciless to tides and currents, before attempting to leave the pelagic zone and settle on a suitable reef. This pelagic dispersal phase is the process that determines population connectivity and allows replenishment of harvested populations across multiple coral reef habitats. Until recently this pelagic larval dispersal phase has been poorly understood and has often been referred to as the 'black-box' in the life-history of coral reef fishes. In this perspective article we highlight three areas where mathematical and computational approaches have been used to aid our understanding of this important ecological process. We discuss models that provide insights into the evolution of the pelagic larval phase in coral reef fish, an unresolved question which lends itself well to a modelling approach due to the difficulty in obtaining empirical data on this life history strategy. We describe how studies of fish hearing and physical sound propagation models can be used to predict the detection distance of reefs for settling larval fish, and the potential impact of anthropogenic noise. We explain how random walk models can be used to explore individual- and group-level behaviour in larval fish during the dispersal and settlement stage of their life-history. Finally, we discuss the mutual benefits that mathematical and computational approaches have brought to and gained from the field of larval behaviour and dispersal of reef fishes.
机译:珊瑚鱼在开阔的海洋中度过了最初的几周,在那里,卵和幼虫对潮汐和洋流毫无帮助,然后才试图离开中上层带并定居在合适的珊瑚礁上。这个中上层扩散阶段是确定种群连通性并允许在多个珊瑚礁生境之间补充已收获种群的过程。直到最近,这种浮游幼体的扩散阶段还鲜为人知,在珊瑚礁鱼类的生活史中通常被称为“黑匣子”。在这篇观点文章中,我们重点介绍了使用数学和计算方法来帮助我们理解这一重要生态过程的三个领域。我们讨论的模型为珊瑚礁鱼类中上层幼体阶段的演化提供了见识,该问题尚未解决,由于难以获得有关该生命史策略的经验数据,因此很适合采用建模方法。我们描述了如何将鱼类听力和物理声音传播模型的研究用于预测安置幼鱼的礁石的检测距离以及人为噪声的潜在影响。我们解释了随机游走模型如何用于探索幼鱼在其生活史的散布和沉降阶段的个体和群体行为。最后,我们讨论了数学和计算方法从幼虫行为和珊瑚礁鱼类扩散领域中获得的互利。

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