Bottom-up and top-down control in a multitrophic system: the role of nutrient limitation and infochemical-mediated predation in a plankton food-web model

Q2 Mathematics
N. Walker, H. Susanto, M. Steinke, Edward A. Codling
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引用次数: 0

Abstract

Chemicals released following herbivore grazing on primary producers can promote multitrophic interactions by influencing the foraging behaviour of higher order predators. In particular, chemicals released during microzooplankton grazing on phytoplankton can act as infochemical cues that elicit foraging responses and improve search efficiency in carnivorous copepods. Models investigating such infochemical-mediated multitrophic interactions in the plankton are typically based on top-down control, where phytoplankton concentrations are controlled through predation and grazing from higher trophic levels. However, in marine environments nutrient limitation is an important factor that influences a food-web from below, and earlier models of this system only indirectly account for this by assuming predator-free growth is logistic with a fixed carrying capacity. Here we consider the dynamics of infochemical-mediated interactions in a marine system where nutrient limitation is modelled directly through an extended NPZ-style model. We show the one-parameter bifurcation behavior of the top-down model to change when the total nutrient availability is changed, and hence demonstrate phytoplankton bloom formation to be a function of both top-down and bottom-up processes.
多营养系统中自下而上和自上而下的控制:浮游生物食物网模型中营养限制和信息化学介导的捕食的作用
食草动物对初级生产者放牧后释放的化学物质可以通过影响高级捕食者的觅食行为来促进多种营养相互作用。特别是,微小浮游动物捕食浮游植物时释放的化学物质可以作为信息化学线索,引发觅食反应,提高食肉桡足类的搜索效率。研究浮游生物中这种信息化学介导的多营养相互作用的模型通常基于自上而下的控制,通过捕食和从更高营养水平放牧来控制浮游植物的浓度。然而,在海洋环境中,营养限制是从下方影响食物网的一个重要因素,该系统的早期模型只是通过假设捕食者的自由生长是具有固定承载能力的逻辑性来间接解释这一点。在这里,我们考虑了海洋系统中信息化学介导的相互作用的动力学,其中营养限制是通过扩展的NPZ型模型直接建模的。我们展示了自上而下模型的单参数分叉行为,当总养分有效性发生变化时,该行为会发生变化,因此证明浮游植物水华的形成是自上而下和自下而上过程的函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Communication in Biomathematical Sciences
Communication in Biomathematical Sciences Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
3.60
自引率
0.00%
发文量
7
审稿时长
24 weeks
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