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The maintenance of genetic variation for oviposition rate in two-spotted spider mites: Inferences from artificial selection

机译:二斑叶螨产卵率遗传变异的维持:人工选择的推论

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摘要

Despite the directional selection acting on life-history traits, substantial amounts of standing variation for these traits have frequently been found. This variation may result from balancing selection (e.g., through genetic trade-offs) or from mutation-selection balance. These mechanisms affect allele frequencies in different ways: Under balancing selection alleles are maintained at intermediate frequencies, whereas under mutation-selection balance variation is generated by deleterious mutations and removed by directional selection, which leads to asymmetry in the distribution of allele frequencies. To investigate the importance of these two mechanisms in maintaining heritable variation in oviposition rate of the two-spotted spider mite, we analyzed the response to artificial selection. In three replicate experiments, we selected for higher and lower oviposition rate, compared to control lines. A response to selection only occurred in the downward direction. Selection for lower oviposition rate did not lead to an increase in any other component of fitness, but led to a decline in female juvenile survival. The results suggest standing variation for oviposition rate in this population consists largely of deleterious alleles, as in a mutation-selection balance. Consequently, the standing variation for this trait does not appear to be indicative of its adaptive potential.
机译:尽管方向选择作用于生活史特征,但经常发现这些特征的站立差异很大。这种变化可能是由于平衡选择(例如,通过遗传折衷)或突变选择平衡引起的。这些机制以不同的方式影响等位基因频率:在平衡选择下,等位基因维持在中频,而在突变选择下,平衡突变是由有害突变产生的,并通过方向选择消除,导致等位基因频率分布的不对称。为了研究这两种机制在维持两斑叶螨产卵率可遗传变化中的重要性,我们分析了对人工选择的响应。在三个重复实验中,与对照组相比,我们选择了更高和更低的产卵率。对选择的响应仅在向下方向上发生。选择较低的排卵率并不会导致其他任何适应度的增加,但是会导致女性少年生存期的下降。结果表明,该人群中产卵率的站立变异主要由有害等位基因组成,如突变选择平衡一样。因此,该性状的站立变化似乎并不表示其适应潜力。

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