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Genetic Mapping of Quantitative Trait Loci Underlying Flowering Time in Chrysanthemum (Chrysanthemum morifolium)

机译:菊花开花时间后的数量性状位点的遗传图谱。

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摘要

Flowering time is an important trait in chrysanthemum, but its genetic basis remains poorly understood. An intra-specific mapping population bred from the cross between the autumn-flowering cultivar ‘Yuhualuoying’ and the summer-flowering ‘Aoyunhanxiao’ was used to determine the number and relative effect of QTL segregating for five measures of flowering time. From flowering time data recorded over two consecutive seasons, 35 additive QTL were detected, each explaining between 5.8% and 22.7% of the overall phenotypic variance. Of these, 13 were detected in both years. Nine genomic regions harboring QTL for at least two of the five traits were identified. Ten pairs of loci epistatically determined the flowering time, but their contribution to the overall phenotypic variance was less than for the additive QTL. The results suggest that flowering time in chrysanthemum is principally governed by main effect QTL but that epistasis also contributes to the genetic architecture of the trait, and the major QTL identified herein are useful in our ongoing efforts to streamline the improvement of chrysanthemum via the use of molecular methodology.
机译:开花时间是菊花的重要特征,但其遗传基础仍知之甚少。利用秋花品种“玉花落营”和夏花品种“ Aoyunhanxiao”之间杂交的种内作图种群,确定了五种开花时间下QTL分离的数量和相对效应。从连续两个季节记录的开花时间数据中,检测到35个附加QTL,每个QTL解释了整体表型变异的5.8%至22.7%。在这两个年份中,共检测到13个。确定了五个特征中至少两个具有QTL的9个基因组区域。十对位点由上位决定开花时间,但它们对总体表型变异的贡献小于加性QTL。结果表明,菊花的开花时间主要受主效应QTL的控制,但上位性也有助于该性状的遗传结构,本文确定的主要QTL可用于我们通过使用CSF简化菊花改良的持续努力中分子方法学。

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