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Comparing relative rates of pollen and seed gene flow in the island model using nuclear and organelle measures of population structure.

机译:使用种群结构的核和细胞器量度比较岛模型中花粉和种子基因流的相对速率。

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摘要

We describe a method for comparing nuclear and organelle population differentiation (F(ST)) in seed plants to test the hypothesis that pollen and seed gene flow rates are equal. Wright's infinite island model is used, with arbitrary levels of self-fertilization and biparental organelle inheritance. The comparison can also be applied to gene flow in animals. Since effective population sizes are smaller for organelle genomes than for nuclear genomes and organelles are often uniparentally inherited, organelle F(ST) is expected to be higher at equilibrium than nuclear F(ST) even if pollen and seed gene flow rates are equal. To reject the null hypothesis of equal seed and pollen gene flow rates, nuclear and organelle F(ST)'s must differ significantly from their expected values under this hypothesis. Finite island model simulations indicate that infinite island model expectations are not greatly biased by finite numbers of populations (>/=100 subpopulations). The power to distinguish dissimilar rates of pollen and seed gene flow depends on confidence intervals for fixation index estimates, which shrink as more subpopulations and loci are sampled. Using data from the tropical tree Corythophora alta, we rejected the null hypothesis that seed and pollen gene flow rates are equal but cannot reject the alternative hypothesis that pollen gene flow is 200 times greater than seed gene flow.
机译:我们描述了一种比较种子植物中核和细胞器种群分化(F(ST))的方法,以测试花粉和种子基因流速相等的假设。使用Wright的无限岛模型,具有任意水平的自我受精和双亲细胞器遗传。比较也可以应用于动物的基因流动。由于细胞器基因组的有效种群数量小于核基因组,并且细胞器通常是单亲遗传的,因此即使花粉和种子基因流量相等,细胞器F(ST)的平衡态也要高于核F(ST)。要拒绝种子和花粉基因流量相等的零假设,核和细胞器F(ST)必须与该假设下的预期值有显着差异。有限的岛屿模型模拟表明,无限的岛屿模型期望不会受到有限数量的人口(> / = 100个亚种群)的严重影响。区分花粉和种子基因流速率不同的能力取决于固定指数估计值的置信区间,该区间随着对更多亚群和基因座的采样而缩小。使用来自热带树冠藻的数据,我们拒绝了种子和花粉基因流量相等的零假设,但不能拒绝花粉基因流量大于种子基因流量200倍的替代假设。

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