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Interactions Among Flower-Size QTL of Mimulus guttatus Are Abundant but Highly Variable in Nature

机译:花的大小gultus guttatus之间的相互作用是丰富的但在自然界中高度可变

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摘要

The frequency and character of interactions among genes influencing complex traits remain unknown. Our ignorance is most acute for segregating variation within natural populations, the epistasis most relevant for quantitative trait evolution. Here, we report a comprehensive survey of interactions among a defined set of flower-size QTL: loci polymorphic within a single natural population of yellow monkeyflower (Mimulus guttatus). We find that epistasis is typical. Observed phenotypes routinely differ from those predicted on the basis of direct allelic affects in the isogenic background, although the direction of deviations is highly variable. Across QTL pairs, there are significantly positive and negative interactions for every trait. Across traits, specific locus pairs routinely exhibit both positive and negative interactions. There was a tendency for negative epistasis to accompany positive direct effects and vice versa for the trait of corolla width, which may be due, at least in part, to the fact that QTL were identified from their direct effects on this trait.
机译:影响复杂性状的基因之间相互作用的频率和特征仍然未知。我们的无知对于自然种群中的差异变异最为严重,而上位性与数量性状进化最相关。在这里,我们报告了对一组定义的花朵大小QTL之间相互作用的全面调查:在单个自然种群的黄色猴花(Mimulus guttatus)中,基因座具有多态性。我们发现上位性是典型的。观察到的表型通常与基于等位基因背景中直接等位基因影响预测的表型不同,尽管偏离的方向差异很大。在各个QTL对之间,每个性状都有明显的正向和负向相互作用。在各种性状中,特定的基因座对通常表现出正向和负向相互作用。对花冠宽度的性状,阴性上位倾向伴随着正的直接效应,反之亦然,这可能至少部分地是由于从其对这种性状的直接效应中鉴定出QTL这一事实。

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