首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Universal power-law diet partitioning by marine fish and squid with surprising stability–diversity implications
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Universal power-law diet partitioning by marine fish and squid with surprising stability–diversity implications

机译:用海洋鱼类和鱿鱼进行的通用幂律饮食分割具有令人惊讶的稳定性-多样性影响

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摘要

A central question in community ecology is how the number of trophic links relates to community species richness. For simple dynamical food-web models, link density (the ratio of links to species) is bounded from above as the number of species increases; but empirical data suggest that it increases without bounds. We found a new empirical upper bound on link density in large marine communities with emphasis on fish and squid, using novel methods that avoid known sources of bias in traditional approaches. Bounds are expressed in terms of the diet-partitioning function (DPF): the average number of resources contributing more than a fraction f to a consumer's diet, as a function of f. All observed DPF follow a functional form closely related to a power law, with power-law exponents independent of species richness at the measurement accuracy. Results imply universal upper bounds on link density across the oceans. However, the inherently scale-free nature of power-law diet partitioning suggests that the DPF itself is a better defined characterization of network structure than link density.
机译:社区生态学中的一个核心问题是营养纽带的数量与社区物种丰富度之间的关系。对于简单的动态食物网模型,随着物种数量的增加,链接密度(链接与物种的比率)从上方限定。但是经验数据表明,它没有限制地增加。我们使用新颖的方法避免了传统方法中已知的偏差来源,从而发现了大型海洋群落中鱼类和鱿鱼为重点的链密度的新的经验上限。界限以饮食分配函数(DPF)表示:对消费者的饮食贡献超过分数f的平均资源数量,是f的函数。所有观察到的DPF都遵循与幂律密切相关的功能形式,幂律指数在测量精度上与物种丰富度无关。结果暗示整个海洋的链接密度具有普遍的上限。但是,幂律饮食分配的固有无标度性质表明,与链路密度相比,DPF本身是对网络结构的更好定义。

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