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Population Bottlenecks and Nonequilibrium Models in Population Genetics. III. Genic Homozygosity in Populations Which Experience Periodic Bottlenecks

机译:人口遗传学中的人口瓶颈和非平衡模型。三经历周期性瓶颈的人群中的纯合子纯合性

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摘要

The amount of variability in a population that experiences repeated restrictions in population size has been calculated. The restrictions in size occur cyclically with a fixed cycle length. Analytical formulas for describing the gene identity at any specific time in the expanded and restricted phases of the cycle, and for the average and second moment of the gene identity, have been derived. It is shown that the level of genetic diversity depends critically on the two parameters that account for the population size, mutation rate and the time of duration for each of the two phases in the cycle. If one or both of these composite parameters are small, the gene diversity will be much reduced, and population gene diversity will then be predictable from knowledge of the harmonic mean population size over the entire cycle. If these parameters take on intermediate values, diversity changes constantly during the cycle, fluctuating steadily from a high to a low value and back again. If these parameters are large, gene diversity will fluctuate rapidly between extreme values and will stay at the extremes for long periods of time.
机译:已经计算出人口规模反复受到限制的人口变异量。大小限制以固定的循环长度循环发生。得出了用于描述循环的扩展和受限阶段中任何特定时间的基因同一性以及该基因同一性的平均和第二时刻的分析公式。结果表明,遗传多样性的水平主要取决于两个参数,这两个参数说明了种群两个周期中每个阶段的种群大小,突变率和持续时间。如果这些复合参数中的一个或两个都较小,则基因多样性将大大降低,然后可以通过了解整个周期的谐波平均种群大小来预测种群基因多样性。如果这些参数取中间值,则分集在周期中会不断变化,从高到低稳定波动,然后又返回。如果这些参数很大,则基因多样性将在极值之间快速波动,并且将长时间处于极值。

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