Data from: Spatially and temporally varying selection on intrapopulation quantitative trait loci for a life history trade-off in Mimulus guttatus
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Why do populations remain genetically variable despite strong continuous natural selection? Mutation reconstitutes variation eliminated by selection and genetic drift, but theoretical and experimental studies each suggest that mutation-selection balance insufficient to explain extant genetic variation in most complex traits. The alternative hypothesis of balancing selection, wherein selection maintains genetic variation, is an aggregate of multiple mechanisms (spatial and temporal heterogeneity in selection, frequency-dependent selection, antagonistic pleiotropy, etc.). Most of these mechanisms have been demonstrated for Mendelian traits, but there is little comparable data for loci affecting quantitative characters. Here, we report a three-year field study of selection on intra-population Quantitative Trait Loci (QTL) of flower size, a highly polygenic trait of Mimulus guttatus. The QTL exhibit antagonistic pleiotropy: alleles that increase flower size reduce viability but increase fecundity. The magnitude and direction of selection fluctuates yearly and on a spatial scale of meters. This study provides direct evidence of balancing selection mechanisms on QTL of an ecologically relevant trait.
尽管存在持续强烈的自然选择,种群为何仍能维持遗传变异?突变会重建被选择和遗传漂变所清除的遗传变异,但理论与实验研究均表明,突变-选择平衡不足以解释多数复杂性状中现存的遗传变异。而认为选择可维持遗传变异的平衡选择假说,则是多种机制的集合(例如选择的时空异质性、频率依赖选择、拮抗多效性等)。上述多数机制已在孟德尔性状中得到验证,但针对影响数量性状的基因座,此类可比数据却十分匮乏。本研究针对斑点沟酸浆(Mimulus guttatus)这一高度多基因调控的花大小性状,开展了为期三年的野外研究,分析其种群内数量性状基因座(Quantitative Trait Loci, QTL)所受的选择作用。该QTL表现出拮抗多效性:增大花尺寸的等位基因会降低个体生活力,但却能提升繁殖力。选择作用的强度与方向每年都会发生波动,且在米级空间尺度上存在变化。本研究为生态相关性状的QTL所受的平衡选择机制提供了直接证据。
创建时间:
2012-05-03



