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丰度-体型关系:代谢与种群动态的作用

Abundance-body size relationships: the roles of metabolism and population dynamics.

作者信息

Lewis Hannah M, Law Richard, McKane Alan J

机构信息

Department of Biology, University of York, York, UK.

出版信息

J Anim Ecol. 2008 Sep;77(5):1056-62. doi: 10.1111/j.1365-2656.2008.01405.x. Epub 2008 Jun 10.

DOI:10.1111/j.1365-2656.2008.01405.x
PMID:18547348
Abstract
  1. Species' abundance scales approximately as an inverse power of body mass. This property has been explained on the basis of metabolic rates of organisms of different sizes. 2. This paper considers the additional effect of population dynamics on the abundance-body size relationship, on the grounds that mass flow through food webs also depends on interactions between predators and their prey. To do this, an analysis of simple dynamical food-chain models was carried out, using rate parameters which scaled with body mass according to empirically based rules. 3. The analysis shows that a function for the abundance-body size relationship derived from metabolic theory is a good first approximation to a function derived for food chains at dynamic equilibrium, although the mechanistic interpretation of terms in the functions is not the same. 4. The results are sensitive to assumptions about the scaling of the self-limitation of basal species with respect to body size. Depending on the assumption made, the abundance-body size relationship may have a power parameter -1 at all trophic levels, or be described by different functions at different trophic levels.
摘要
  1. 物种丰富度大致按体重的负幂缩放。这一特性已基于不同大小生物体的代谢率得到解释。2. 本文考虑了种群动态对丰度 - 体型关系的额外影响,理由是通过食物网的物质流也取决于捕食者与其猎物之间的相互作用。为此,使用根据基于经验的规则随体重缩放的速率参数,对简单动态食物链模型进行了分析。3. 分析表明,从代谢理论推导得出的丰度 - 体型关系函数,是动态平衡时食物链推导函数的一个很好的一阶近似,尽管函数中各项的机理解释不同。4. 结果对关于基础物种自我限制随体型缩放的假设很敏感。根据所做的假设,丰度 - 体型关系在所有营养级可能具有幂参数 -1,或者在不同营养级由不同函数描述。

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