拟南芥中性标记和数量性状的遗传分化:理论与实验的对抗。

Emmanuelle Porcher, Tatiana Giraud, Claire Lavigne
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引用次数: 40

摘要

数量性状(QST)和分子标记(FST)的遗传分化比较可以揭示自然群体中选择的强度和空间异质性,前提是标记表现中立。然而,选择可能会影响自交物种中标记的行为,这些标记在位点之间具有强烈的连锁不平衡,因此使这种检测选择的测试无效。我们通过监测拟南芥(Arabidopsis thaliana) 8代进化过程中5个微卫星位点(FST)和9个数量性状(QST)的遗传分化来解决这一问题。元种群在种群大小和选择异质性方面存在差异。在大群体中,中性微卫星在异质选择下的遗传分化要比均匀选择下大得多。通过模拟,我们发现这种选择异质性对FST的影响可归因于位点之间的初始连锁不平衡,这使得QTL的遗传分化比在没有初始连锁的简单加性模型下预期的更强。我们发现FST和QST之间没有显著差异,尽管已经证明了选择对QST值的影响。需要更多的数据来验证交配系统和连锁不平衡在中性和选择性遗传分化联合进化中的作用,但我们的研究结果表明,FST/QST比较可以作为检测自交物种选择的保守检验。
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Genetic differentiation of neutral markers and quantitative traits in predominantly selfing metapopulations: confronting theory and experiments with Arabidopsis thaliana.

The comparison of the genetic differentiation of quantitative traits (QST) and molecular markers (FST) can inform on the strength and spatial heterogeneity of selection in natural populations, provided that markers behave neutrally. However, selection may influence the behaviour of markers in selfing species with strong linkage disequilibria among loci, therefore invalidating this test of detection of selection. We address this issue by monitoring the genetic differentiation of five microsatellite loci (FST) and nine quantitative traits (QST) in experimental metapopulations of the predominantly selfing species Arabidopsis thaliana, that evolved during eight generations. Metapopulations differed with respect to population size and selection heterogeneity. In large populations, the genetic differentiation of neutral microsatellites was much larger under heterogeneous selection than under uniform selection. Using simulations, we show that this influence of selection heterogeneity on FST can be attributable to initial linkage disequilibria among loci, creating stronger genetic differentiation of QTL than expected under a simple additive model with no initial linkage. We found no significant differences between FST and QST regardless of selection heterogeneity, despite a demonstrated effect of selection on QST values. Additional data are required to validate the role of mating system and linkage disequilibria in the joint evolution of neutral and selected genetic differentiation, but our results suggest that FST/QST comparisons can be conservative tests to detect selection in selfing species.

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Wild populations are smaller than we think: a commentary on 'Effective population size/adult population size ratios in wildlife: a review' by Richard Frankham. Impact of selection on effective population size: a commentary on 'Inbreeding in artificial selection programmes' by Alan Robertson. Hybrid dysgenesis: from darkness into light: a commentary on 'Hybrid dysgenesis in Drosophila melanogaster: rules of inheritance of female sterility' by William R. Engels. A model in two acts: a commentary on 'A model detectable alleles in a finite population' by Timoko Ohta and Motoo Kimura. Estimating the recombination parameter: a commentary on 'Estimating the recombination parameter of a finite population model without selection' by Richard R. Hudson.
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