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首页> 外文期刊>Mathematical modelling of natural phenomena >Multitrophic Interactions in the Sea: Assessing the Effect of Infochemical-Mediated Foraging in a 1-d Spatial Model
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Multitrophic Interactions in the Sea: Assessing the Effect of Infochemical-Mediated Foraging in a 1-d Spatial Model

机译:海洋中的多营养相互作用:在一维空间模型中评估信息化学介导的觅食的影响

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摘要

The release of chemicals following herbivore grazing on primary producers may provide feeding cues to carnivorous predators, thereby promoting multitrophic interactions. In particular, chemicals released following grazing on phytoplankton by microzooplankton herbivores have been shown to elicit a behavioural foraging response in carnivorous copepods, which may use this chemical information as a mechanism to locate and remain within biologically productive patches of the ocean. In this paper, we use a ID spatial reaction-diffusion model to simulate a tri-trophic planktonic system in the water column, where predation at the top trophic level (copepods) is affected by infochemicals released by the primary producers forming the bottom trophic level. The effect of the infochemical-mediated predation is investigated by comparing the case where copepods forage randomly to the case where copepods adjust their vertical position to follow the distribution of grazing-induced chemicals. Results indicate that utilization of infochemicals for foraging provides fitness benefits to copepods and stabilizes the system at high nutrient load, whilst also forming a possible mechanism for phytoplankton bloom formation. We also investigate how the copepod efficiency to respond to infochemicals affects the results, and show that small increases (2%) in the ability of copepods to sense infochemicals can promote their persistence in the system. Finally we argue that effectively employing infochemicals for foraging can be an evolutionarily stable strategy for copepods.
机译:食草动物放牧给初级生产者后释放的化学物质可能为肉食性捕食者提供喂养线索,从而促进了多营养的相互作用。特别是,已显示微浮游动物吃草浮游植物后在浮游植物上放出的化学物质会引起食肉po足类的行为觅食反应,这可能会将这种化学信息用作定位并留在海洋中具有生物生产力的机制。在本文中,我们使用一个ID空间反应扩散模型来模拟水柱中的三营养浮游生物系统,其中顶层营养层(铜足动物)的捕食受到形成底层营养层的初级生产者释放的信息化学物质的影响。通过比较co足动物随机觅食的情况与co足动物调整其垂直位置以适应放牧诱导的化学物质分布的情况,研究了信息化学介导的捕食的影响。结果表明,利用信息化学物质进行觅食可为co足类提供健身益处,并在高养分负荷下使系统稳定,同时也为浮游植物的水华形成提供了可能的机制。我们还研究了pe足类动物对信息化学物质的响应效率如何影响结果,并表明co足类动物感知信息化学物质的能力小幅提高(2%)可以促进其在系统中的持久性。最后,我们认为有效利用信息化学物质进行觅食可能是co足类动物进化上的稳定策略。

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