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The Generation and Maintenance of Genetic Variation by Frequency-Dependent Selection: Constructing Polymorphisms Under the Pairwise Interaction Model

机译:通过频率依赖性选择的遗传变异的产生和维持:在成对相互作用模型下构建多态性

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Frequency-dependent selection remains the most commonly invoked heuristic explanation for the maintenance of genetic variation. For polymorphism to exist, new alleles must be both generated and maintained in the population. Here we use a construction approach to model frequency-dependent selection with mutation under the pairwise interaction model. The pairwise interaction model is a general model of frequency-dependent selection at the genotypic level. We find that frequency-dependent selection is able to generate a large number of alleles at a single locus. The construction process generates multiallelic polymorphisms with a wide range of allele-frequency distributions and genotypic fitness relationships. Levels of polymorphism and mean fitness are uncoupled, so constructed polymorphisms remain permanently invasible to new mutants; thus the model never settles down to an equilibrium state. Analysis of constructed fitness sets reveals signatures of heterozygote advantage and positive frequency dependence.
机译:频率依赖性选择仍然是维持遗传变异最常用的启发式解释。为了存在多态性,必须在种群中既产生又维持新的等位基因。在这里,我们使用一种构建方法来建模在成对交互模型下具有突变的频率相关选择。双向相互作用模型是基因型水平上频率依赖性选择的通用模型。我们发现依赖频率的选择能够在单个基因座上产生大量等位基因。构建过程产生具有多种等位基因频率分布和基因型适应关系的多等位基因多态性。多态性和平均适应度的水平是不相关的,因此构建的多态性对于新的突变体仍然是永久不可入侵的。因此模型永远不会稳定到平衡状态。对构建的适应度集合的分析揭示了杂合子优势和正向频率依赖性的特征。

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