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觅食理论预测捕食者与猎物之间的能量流动。

Foraging theory predicts predator-prey energy fluxes.

作者信息

Brose U, Ehnes R B, Rall B C, Vucic-Pestic O, Berlow E L, Scheu S

机构信息

Department of Biology, Darmstadt University of Technology, Darmstadt, Germany.

出版信息

J Anim Ecol. 2008 Sep;77(5):1072-8. doi: 10.1111/j.1365-2656.2008.01408.x. Epub 2008 Jun 5.

Abstract
  1. In natural communities, populations are linked by feeding interactions that make up complex food webs. The stability of these complex networks is critically dependent on the distribution of energy fluxes across these feeding links. 2. In laboratory experiments with predatory beetles and spiders, we studied the allometric scaling (body-mass dependence) of metabolism and per capita consumption at the level of predator individuals and per link energy fluxes at the level of feeding links. 3. Despite clear power-law scaling of the metabolic and per capita consumption rates with predator body mass, the per link predation rates on individual prey followed hump-shaped relationships with the predator-prey body mass ratios. These results contrast with the current metabolic paradigm, and find better support in foraging theory. 4. This suggests that per link energy fluxes from prey populations to predator individuals peak at intermediate body mass ratios, and total energy fluxes from prey to predator populations decrease monotonically with predator and prey mass. Surprisingly, contrary to predictions of metabolic models, this suggests that for any prey species, the per link and total energy fluxes to its largest predators are smaller than those to predators of intermediate body size. 5. An integration of metabolic and foraging theory may enable a quantitative and predictive understanding of energy flux distributions in natural food webs.
摘要
  1. 在自然群落中,种群通过构成复杂食物网的摄食相互作用而联系在一起。这些复杂网络的稳定性关键取决于能量通量在这些摄食联系中的分布。2. 在对捕食性甲虫和蜘蛛进行的实验室实验中,我们研究了捕食者个体水平上代谢和人均消耗量的异速生长缩放(对体重的依赖性)以及摄食联系水平上每个联系的能量通量。3. 尽管代谢率和人均消耗率与捕食者体重之间存在明显的幂律缩放关系,但个体猎物上每个联系的捕食率与捕食者 - 猎物体重比呈驼峰形关系。这些结果与当前的代谢范式形成对比,在觅食理论中得到了更好的支持。4. 这表明从猎物种群到捕食者个体的每个联系的能量通量在中等体重比时达到峰值,从猎物到捕食者种群的总能量通量随着捕食者和猎物的体重单调下降。令人惊讶的是,与代谢模型的预测相反,这表明对于任何猎物物种,其最大捕食者的每个联系和总能量通量都小于中等体型捕食者的能量通量。5. 将代谢理论和觅食理论相结合,可能会使我们对自然食物网中的能量通量分布有一个定量的、可预测的理解。

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