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To eat and not be eaten: optimal foraging behaviour in suspension feeding copepods

机译:吃和不吃:悬浮饲料co足类的最佳觅食行为

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摘要

Zooplankton feed on microscopic prey that they either entrain in a feeding current or encounter as they cruise through the water. They generate fluid disturbances as they feed and move, thus elevating their risk of being detected and encountered by predators. Different feeding modes generate different hydrodynamic signals to predators and different predator encounter speeds but may also differ in their efficiency; the optimal behaviour is that which maximizes the net energy gain over the predation risk. Here, we show by means of flow visualization and simple hydrodynamic and optimization models that copepods with a diversity of feeding behaviours converge on optimal, size-independent specific clearance rates that are consistent with observed clearance rates of zooplankton, irrespective of feeding mode, species and size. We also predict magnitudes and size-scaling of swimming speeds that are consistent with observations. The rationalization of the magnitude and scaling of the clearance rates of zooplankton makes it more suitable for development of models of marine ecosystems, and is particularly relevant in predicting the size structure and biomass of pelagic communities.
机译:浮游动物以微观的猎物为食,它们要么被某种摄食流所夹带,要么在它们在水中航行时遇到。它们在进食和移动时会产生流体干扰,因此增加了被掠食者发现和遇到的风险。不同的进食方式会向捕食者产生不同的水动力信号,并且捕食者遇到的速度也会不同,但效率也会有所不同。最佳行为是在捕食风险之上使净能量收益最大化的行为。在这里,我们通过流动可视化以及简单的水动力和优化模型来显示,与多种摄食行为相对应的动物在最佳的,大小无关的比清除率上收敛,该比清除率与浮游动物的观察到的清除率一致,而与喂食方式,物种和种类无关。尺寸。我们还预测了游泳速度的大小和大小比例,与观察结果一致。浮游动物清除率的大小和比例的合理化使其更适合于海洋生态系统模型的开发,并且在预测远洋鱼类群落的大小结构和生物量方面特别重要。

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