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数量遗传学与种群动态学

QUANTITATIVE GENETICS AND POPULATION DYNAMICS.

作者信息

Doebeli Michael

机构信息

Zoology Institute, University of Basel, Rheinsprung 9, CH-4051, Basel, Switzerland.

出版信息

Evolution. 1996 Apr;50(2):532-546. doi: 10.1111/j.1558-5646.1996.tb03866.x.

Abstract

This study examines the dynamics of a competition and a host-parasite model in which the interactions are determined by quantitative characters. Both models are extensions of one-dimensional difference equations that can exhibit complicated dynamics. Compared to these basic models, the phenotypic variability given by the quantitative characters reduces the size of the density fluctuations in asexual populations. With sexual reproduction, which is described by modeling the genetics of the quantitative character explicitly with many haploid loci that determine the character additively, this reduction in fitness variance is magnified. Moreover, quantitative genetics can induce simple dynamics. For example, the sexual population can have a two-cycle when the asexual system is chaotic. This paper discusses the consequences for the evolution of sex. The higher mean growth rate implied by the lower fitness variance in sexual populations is an advantage that can overcome a twofold intrinsic growth rate of asexuals. The advantage is bigger when the asexual population contains only a subset of the phenotypes present in the sexual population, which conforms with the tangled bank theory for the evolution of sex and shows that tangled bank effects also occur in host-parasite systems. The results suggest that explicitly describing the genetics of a quantitative character leads to more flexible models than the usual assumption of normal character distributions, and therefore to a better understanding of the character's impact on population dynamics.

摘要

本研究考察了一个竞争模型和一个宿主 - 寄生虫模型的动态变化,其中相互作用由数量性状决定。这两个模型都是一维差分方程的扩展,能够展现出复杂的动态变化。与这些基本模型相比,数量性状所赋予的表型变异性降低了无性种群中密度波动的幅度。通过有性生殖(通过对多个单倍体位点进行建模来明确描述数量性状的遗传,这些位点以加性方式决定性状),这种适合度方差的降低被放大了。此外,数量遗传学能够诱导出简单的动态变化。例如,当无性系统处于混沌状态时,有性种群可能会出现双周期。本文讨论了这些结果对性进化的影响。有性种群中较低的适合度方差所暗示的较高平均增长率是一个优势,它能够克服无性生殖两倍的内在增长率。当无性种群仅包含有性种群中出现的部分表型时,这个优势会更大,这与性进化的纠结河岸理论相符,表明纠结河岸效应也会在宿主 - 寄生虫系统中出现。结果表明,明确描述数量性状的遗传会导致比通常假设的正态性状分布更灵活的模型,从而能更好地理解性状对种群动态的影响。

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