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进化熵:体型、代谢率和最大寿命的预测指标。

Evolutionary entropy: a predictor of body size, metabolic rate and maximal life span.

作者信息

Demetrius Lloyd, Legendre Stéphane, Harremöes Peter

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA, USA.

出版信息

Bull Math Biol. 2009 May;71(4):800-18. doi: 10.1007/s11538-008-9382-6. Epub 2009 Jan 27.

Abstract

Body size of organisms spans 24 orders of magnitude, and metabolic rate and life span present comparable differences across species. This article shows that this variation can be explained in terms of evolutionary entropy, a statistical parameter which characterizes the robustness of a population, and describes the uncertainty in the age of the mother of a randomly chosen newborn. We show that entropy also has a macroscopic description: It is linearly related to the logarithm of the variables body size, metabolic rate, and life span. Furthermore, entropy characterizes Darwinian fitness, the efficiency with which a population acquires and converts resources into viable offspring. Accordingly, entropy predicts the outcome of natural selection in populations subject to different classes of ecological constraints. This predictive property, when integrated with the macroscopic representation of entropy, is the basis for enormous differences in morphometric and life-history parameters across species.

摘要

生物体的体型跨越24个数量级,代谢率和寿命在不同物种间也存在类似的差异。本文表明,这种变化可以用进化熵来解释,进化熵是一个统计参数,它表征了种群的稳健性,并描述了随机选择的新生儿的母亲年龄的不确定性。我们表明,熵也有一个宏观描述:它与体型、代谢率和寿命这些变量的对数呈线性相关。此外,熵表征了达尔文适应性,即种群获取资源并将其转化为可存活后代的效率。因此,熵预测了在受到不同类型生态约束的种群中自然选择的结果。这种预测特性与熵的宏观表示相结合,是物种间形态测量和生活史参数存在巨大差异的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/017e/2784518/446f6f403c83/11538_2008_Article_9382_Fig1.jpg

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