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首页> 外文期刊>Journal of Theoretical Biology >Allometry and catastrophic regime shifts in food chains.
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Allometry and catastrophic regime shifts in food chains.

机译:食物链中的异构和灾难性政权转移。

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Population dynamics can reflect the body mass distribution of species because there is an allometric relationship between the average body mass of species and its metabolic timescale. Since predators are generally larger than their prey, a hierarchical structure from fast timescales to slow timescales can be a general structure in food webs. In this paper, we show that changes of the metabolic timescale ratio can cause catastrophic shifts. Then, we investigate a two-dimensional parameter space with the timescale ratio and the carrying capacity of basal species, and reveal that the timescale ratio characterizes the response of the system to environmental variation. Finally, in a bistable regime, we try to clarify the relationship between the trophic position of a species and the extent to which the species induces attractor switching. We saw that, in a 4-species food chain, top predators and second consumers induce attractor switching easily compared to first consumers and basal species.
机译:种群动态可以反映物种的体重分布,因为物种的平均体重与其代谢时间尺度之间存在异速关系。由于掠食者通常大于猎物,因此从快速时标到慢速时标的分层结构可能是食物网中的常规结构。在本文中,我们表明代谢时标比例的变化会导致灾难性的变化。然后,我们研究了具有时标比率和基础物种的承载能力的二维参数空间,并揭示了时标比率表征了系统对环境变化的响应。最后,在双稳态体系中,我们试图阐明物种的营养位置与该物种诱导吸引子切换的程度之间的关系。我们发现,在4种食物链中,与第一类消费者和基础物种相比,顶级掠食者和第二类消费者容易诱发吸引者转换。

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