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Enrichment and stability: A phenomenological coupling of energy value and carrying capacity

机译:丰富性和稳定性:能量值和承载力的现象学耦合

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Simple predator–prey models with a prey-dependent functional response predict that enrichment (increased carrying capacity) destabilizes community dynamics: this is the ‘paradox of enrichment’. However, the energy value of prey is very important in this context. The intraspecific chemical composition of prey species determines its energy value as a food for the potential predator. Theoretical and experimental studies establish that variable chemical composition of prey affects the predator–prey dynamics. Recently, experimental and theoretical approaches have been made to incorporate explicitly the stoichiometric heterogeneity of simple predator–prey systems. Following the results of the previous experimental and theoretical advances, in this article we propose a simple phenomenological formulation of the variation of energy value at increased level of carrying capacity. Results of our study demonstrate that coupling the parameters representing the phenomenological energy value and carrying capacity in a realistic way, may avoid destabilization of community dynamics following enrichment. Additionally, under such coupling the producer–grazer system persists for only an intermediate zone of production—a result consistent with recent studies. We suggest that, while addressing the issue of enrichment in a general predator–prey model, the phenomenological relationship that we propose here might be applicable to avoid Rosenzweig’s paradox.
机译:具有依赖于猎物的功能性反应的简单的捕食者-猎物模型预测,富集(承载能力增加)破坏了社区动态的稳定性:这就是“富集悖论”。但是,在这种情况下,猎物的能量价值非常重要。捕食物种的种内化学成分决定了其作为潜在捕食者食物的能量值。理论和实验研究表明,猎物的可变化学成分会影响食肉动物-猎物的动力学。最近,已经进行了实验和理论方法,以明确纳入简单的捕食者-被捕食者系统的化学计量异质性。遵循先前的实验和理论进展的结果,在本文中,我们提出了一种简单的现象学表述,即在承载能力增加的情况下能量值的变化。我们的研究结果表明,以现实的方式耦合代表现象学能量值和承载能力的参数,可以避免富集后社区动态的不稳定。此外,在这种耦合下,生产者-放牧者系统仅在生产的中间区域持续存在,这一结果与最近的研究一致。我们建议,在解决一般捕食者-猎物模型中的浓缩问题时,我们在这里提出的现象学关系可能适用于避免罗森维格的悖论。

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