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Quantitative genetic variation in Daphnia: Temporal changes in genetic architecture

机译:水蚤的定量遗传变异:遗传结构的时间变化

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Nonadditive genetic variation and genetic disequilibrium are two important factors that influence the evolutionary trajectory of natural populations. We assayed quantitative genetic variation in a temporary-pond-dwelling population of Daphnia pulex over a full season to examine the role of nonadditive genetic variation and genetic disequilibrium in determining the short-term evolutionary trajectory of a cyclic parthenogen. Quantitative traits were influenced by three factors: (1) clonal selection significantly changed the population mean phenotype during the course of the growing season; (2) sexual reproduction and recombination led to significant changes in life-history trait means and the levels of expressed genetic variation, implying the presence of substantial nonadditive genetic variation and genetic disequilibrium; and (3) Egg-bank effects were found to be an important component of the realized year-to-year change. Additionally, we examined the impact of genetic disequilibria induced by clonal selection on the genetic (co)variance structure with a common principal components model. Clonal selection caused significant changes in the (co)variance structure that were eliminated by a single bout of random mating, suggesting that a build-up of disequilibria was the primary source of changes in the (co)variance structure. The results of this study highlight the complexity of natural selection operating on populations that undergo alternating phases of sexual and asexual reproduction. [References: 28]
机译:非加性遗传变异和遗传不平衡是影响自然种群进化轨迹的两个重要因素。我们在整个季节中测定了蚤蚤的临时居住种群中的定量遗传变异,以研究非加性遗传变异和遗传不平衡在确定循环孤雌生殖的短期进化轨迹中的作用。数量性状受三个因素影响:(1)在生长季节过程中,克隆选择显着改变了种群平均表型; (2)有性生殖和重组导致生活史特征手段和表达的遗传变异水平发生重大变化,这意味着存在大量的非加性遗传变异和遗传失衡; (3)发现卵库效应是实现的逐年变化的重要组成部分。此外,我们检查了克隆选择引起的遗传不平衡对遗传(共)方差结构的影响,并采用了常见的主成分模型。克隆选择引起了(共)方差结构的重大变化,这些变化被单次随机交配消除了,这表明不平衡的积累是(共)方差结构变化的主要来源。这项研究的结果突显了自然选择的复杂性,该自然选择是针对经历有性和无性繁殖交替阶段的人群进行的。 [参考:28]

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