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选择的单位与适合度的衡量标准。

The units of selection and measures of fitness.

作者信息

Demetrius L

出版信息

Proc R Soc Lond B Biol Sci. 1985 Aug 22;225(1239):147-59. doi: 10.1098/rspb.1985.0056.

Abstract

This paper presents a unified account of the properties of the measures, Malthusian parameter and entropy in predicting evolutionary change in populations of macromolecules, cells and individuals. The Malthusian parameter describes the intrinsic rate of increase of the population. The entropy describes the intrinsic variability in populations: it characterizes the variability in mutation and replication rates in populations of macromolecules; the rate of decay of synchrony in populations of cells; and the degree of iteroparity in populations of individuals. The Malthusian parameter determines ultimate population numbers: under constant environmental conditions, it is the rate of increase when equilibrium conditions are attained. Entropy determines population stability: the gain in the Malthusian parameter due to small fluctuations in the life-cycle variables is determined by entropy. These properties, which are valid for populations of macromolecules, cells and individuals, show that the Malthusian parameter and entropy act as complimentary fitness indices in understanding evolutionary change in populations.

摘要

本文对马尔萨斯参数和熵这两个度量指标的性质进行了统一阐述,它们在预测大分子、细胞和个体群体的进化变化方面具有重要作用。马尔萨斯参数描述了群体的内在增长率。熵描述了群体中的内在变异性:它表征了大分子群体中突变和复制速率的变异性;细胞群体中同步性的衰减速率;以及个体群体中的多次繁殖程度。马尔萨斯参数决定了最终的群体数量:在恒定的环境条件下,它是达到平衡条件时的增长率。熵决定了群体稳定性:生命周期变量的微小波动导致的马尔萨斯参数的增加量由熵决定。这些对大分子、细胞和个体群体都有效的性质表明,马尔萨斯参数和熵在理解群体进化变化中起着互补的适应性指标作用。

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