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首页> 外文期刊>Theoretical Ecology >Oceanic diel vertical migrations arising from a predator-prey game
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Oceanic diel vertical migrations arising from a predator-prey game

机译:来自捕食者 - 猎物游戏产生的海洋DIEL垂直迁移

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The deep scattering layer is an ubiquitous aggregation of zooplankton and forage fish in the ocean. It features the striking phenomenon of diel vertical migration, where animals remain in deep, dark water in daylight hours and migrate upwards at dusk. The common explanation for this is that prey avoid vulnerability to visual predators. Here, we develop a game-theoretic explanation for the deep scattering layer and its diel vertical migrations, focusing on one generic predator species and one generic prey species. The model is formulated in continuous time and space, and by neglecting the cost of locomotion, it allows fine-grained predictions of vertical distributions. The Nash equilibrium features a distinct deep scattering layer which undertakes diel vertical migrations, the range of which increases with predator abundance. Maximum feeding rates are predicted to occur at dawn and dusk. Predator interference emerges from the game dynamics in the form of a complicated functional dependency of gross encounter rates on predator abundance. In turn, the growth rate of the prey decreases monotonically with predator abundance. In addition to providing a mechanistic explanation for the striking phenomenon of diel vertical migrations, the model yields quantitative predictions of vertical distributions and diel patterns in feeding intake, which may be compared with acoustic data, observed individual behavior, or stomach data.
机译:深度散射层是海洋中浮游动物和牧草的普遍存在的聚集。它具有Diel垂直迁移的醒目现象,动物留在白天的深水中,在日光小时内,在黄昏时向上迁移。对此的常见解释是猎物避免易受视觉捕食者的脆弱性。在这里,我们开发了对深度散射层及其DIEL垂直迁移的游戏理论解释,专注于一个通用捕食者物种和一个通用猎物。该模型在连续时间和空间中配制,忽略了运动成本,允许垂直分布的细粒度预测。纳什平衡具有一个不同的深度散射层,其进行Diel垂直迁移,其范围与捕食者丰富增加。预计在黎明和黄昏时预设最大的喂养速率。捕食者干扰从游戏动态出现在捕食者丰富的严重遭遇率的复杂功能依赖性的形式。反过来,猎物的生长速度随着捕食者丰富而单调地减少。除了为DIEL垂直迁移的醒目现象提供机械解释之外,模型还产生垂直分布的定量预测和馈送摄入量的垂直分布和DIEL模式,其可以与声学数据进行比较,观察单个行为或胃数据。

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