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首页> 外文期刊>Journal of evolutionary biology >The stationary distribution of a continuously varying strategy in a class-structured population under mutation-selection-drift balance
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The stationary distribution of a continuously varying strategy in a class-structured population under mutation-selection-drift balance

机译:变异-选择-漂移平衡下一类结构群体中连续变化策略的平稳分布

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Many traits and/or strategies expressed by organisms are quantitative phenotypes. Because populations are of finite size and genomes are subject to mutations, these continuously varying phenotypes are under the joint pressure of mutation, natural selection and random genetic drift. This article derives the stationary distribution for such a phenotype under a mutation-selection-drift balance in a class-structured population allowing for demographically varying class sizes and/or changing environmental conditions. The salient feature of the stationary distribution is that it can be entirely characterized in terms of the average size of the gene pool and Hamilton's inclusive fitness effect. The exploration of the phenotypic space varies exponentially with the cumulative inclusive fitness effect over state space, which determines an adaptive landscape. The peaks of the landscapes are those phenotypes that are candidate evolutionary stable strategies and can be determined by standard phenotypic selection gradient methods (e.g. evolutionary game theory, kin selection theory, adaptive dynamics). The curvature of the stationary distribution provides a measure of the stability by convergence of candidate evolutionary stable strategies, and it is evaluated explicitly for two biological scenarios: first, a coordination game, which illustrates that, for a multipeaked adaptive landscape, stochastically stable strategies can be singled out by letting the size of the gene pool grow large; second, a sex-allocation game for diploids and haplo-diploids, which suggests that the equilibrium sex ratio follows a Beta distribution with parameters depending on the features of the genetic system.
机译:生物体表达的许多特征和/或策略是定量表型。由于种群的大小是有限的,基因组会发生突变,因此这些不断变化的表型处于突变,自然选择和随机遗传漂移的共同压力下。本文推导了在一个类别结构化群体中的突变选择-漂移平衡下这种表型的平稳分布,从而允许人口统计学上变化的类别规模和/或变化的环境条件。平稳分布的显着特征是可以完全根据基因库的平均大小和汉密尔顿的包容性适应性特征来表征。对表型空间的探索随状态空间上累积的包容适应性效应呈指数变化,从而确定了自适应景观。景观的峰值是那些候选的进化稳定策略的表型,可以通过标准的表型选择梯度方法(例如进化博弈论,亲属选择论,适应性动力学)来确定。静态分布的曲率通过候选进化稳定策略的收敛来提供稳定性的度量,并且针对两种生物学场景进行了显式评估:首先是协调博弈,它说明了对于多峰自适应景观,随机稳定策略可以通过使基因库的大小变大来挑选出来;其次,针对二倍体和单倍二倍体的性别分配博弈,这表明平衡性别比遵循Beta分布,其参数取决于遗传系统的特征。

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