减轻主基因固定对人工选择的多基因遗传变异的影响。

Leopoldo Sánchez, Armando Caballero, Enrique Santiago
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引用次数: 10

摘要

由主基因固定引起的选择性变异扫描可能对背景多基因变异的遗传增益产生巨大影响,特别是在与主基因密切相关的基因组区域。由于主基因频率的增加导致选择强度的降低和有效群体大小的减小,对选择的反应受到抑制。在需要固定已知主基因的选定种群中,出现了这样一个问题:哪一条是增加基因频率的最佳途径,从而使固定基因导致的选择性变异最小化。利用基本的理论论证,我们提出了一种频率路径,通过最小化主基因的平均平方选择强度,在给定的固定时间内,使适用于所选背景的有效种群大小和多基因变异的选择强度同时最大化。我们还建议使用主基因携带者和非携带者之间的交配,以促进主基因与其相关的多基因背景之间的有效重组。使用基于基因座的计算机模拟,假设不同程度的连锁,我们表明,所提出的路径比最近发表的类似路径更有效,并且选择和交配方法的结合提供了一种有效的方法来减轻选择性扫描的负面影响。
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Palliating the impact of fixation of a major gene on the genetic variation of artificially selected polygenes.

Selective sweeps of variation caused by fixation of major genes may have a dramatic impact on the genetic gain from background polygenic variation, particularly in the genome regions closely linked to the major gene. The response to selection can be restrained because of the reduced selection intensity and the reduced effective population size caused by the increase in frequency of the major gene. In the context of a selected population where fixation of a known major gene is desired, the question arises as to which is the optimal path of increase in frequency of the gene so that the selective sweep of variation resulting from its fixation is minimized. Using basic theoretical arguments we propose a frequency path that maximizes simultaneously the effective population size applicable to the selected background and the selection intensity on the polygenic variation by minimizing the average squared selection intensity on the major gene over generations up to a given fixation time. We also propose the use of mating between carriers and non-carriers of the major gene, in order to promote the effective recombination between the major gene and its linked polygenic background. Using a locus-based computer simulation assuming different degrees of linkage, we show that the path proposed is more effective than a similar path recently published, and that the combination of the selection and mating methods provides an efficient way to palliate the negative effects of a selective sweep.

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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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