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EVOLUTION BY FISHERIAN SEXUAL SELECTION IN DIPLOIDS

机译:渔民在性中的进化

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Most models of Fisherian sexual selection assume haploidy. However, analytical models that focus on dynamics near fixation boundaries and simulations show that the resulting behavior depends on ploidy. Here we model sexual selection in a diploid to characterize behaviour away from fixation boundaries. The model assumes two di-allelic loci, a male-limited trait locus subject to viability selection, and a preference locus that determines a female's tendency to mate with males based on their genotype at the trait locus. Using a quasi-linkage equilibrium (QLE) approach, we find a general equation for the curves of quasi-neutral equilibria, and the conditions under which they are attracting or repelling. Unlike in the haploid model, the system can move away from the internal curve of equilibria in the diploid model. We show that this is the case when the combined forces of natural and sexual selection induce underdominance at the trait locus.
机译:多数渔场性选择模型都采用单倍体。但是,专注于注视边界附近动力学的分析模型和模拟表明,所得行为取决于倍性。在这里,我们对二倍体中的性选择进行建模,以刻画远离注视边界的行为。该模型假设有两个双等位基因座,一个是雄性有限的性状位点,该位点需要进行生存力选择,一个优先位点,根据其性状位点的基因型来确定雌性与雄性交配的倾向。使用准链接平衡(QLE)方法,我们为准中性平衡曲线及其吸引或排斥的条件找到了一个一般方程。与单倍体模型不同,系统可以远离二倍体模型的平衡内部曲线。我们表明,当自然选择和性选择的合力在特质位点引起显性优势时,就是这种情况。

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