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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Consumption patterns, complexity and enrichment in aquatic food chains
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Consumption patterns, complexity and enrichment in aquatic food chains

机译:水生食物链的消费方式,复杂性和丰富性

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The interactions between consumers and prey, and their impact on biomass distribution among trophic levels, are central issues in both empirical and theoretical ecology In a long-term experiment, where all organisms, including the top predator, were allowed to respond to environmental conditions by reproduction, we tested predictions from 'prey-dependent' and 'ratio-dependent' models. Prey-dependent models made correct predictions only in the presence of strong interactors in simple food chains, but failed to predict patterns in more complex situations. Processes such as omnivory, consumer excretion, and unsuitable prey-size windows (invulnerable prey) increased the complexity and created patterns resembling ratio-dependent consumption. However, whereas the prey-dependent patterns were created by the mechanisms predicted by the model, ratio-dependent patterns were not, suggesting that they may be 'right for the wrong reason'. We show here that despite the enormous complexity of ecosystems, it is possible to identify and disentangle mechanisms responsible for observed patterns in community structure, as well as in biomass development of organisms ranging in size from bacteria to fish. [References: 43]
机译:消费者与猎物之间的相互作用及其对营养级别之间生物量分布的影响,是经验生态学和理论生态学的中心问题。复制,我们测试了“依赖猎物”和“比率依赖”模型的预测。依赖猎物的模型仅在简单食物链中存在强相互作用者的情况下才能做出正确的预测,但无法预测更复杂情况下的模式。诸如杂食,消费者排泄和不适当的猎物大小窗口(无敌的猎物)之类的过程增加了复杂性,并创建了类似于比率依赖型消费的模式。然而,尽管依赖模型的猎物模式是由模型预测的,但依赖比例的模式却并非如此,这表明它们可能“因错误的原因而正确”。我们在这里表明,尽管生态系统非常复杂,但有可能发现和解开负责观察到的群落结构模式以及从细菌到鱼类的各种生物的生物量发展的机制。 [参考:43]

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