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Genetic Mapping of the Leaf Number above the Primary Ear and Its Relationship with Plant Height and Flowering Time in Maize

机译:玉米主穗上方叶片数的遗传图谱及其与株高和开花时间的关系

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The leaf number above the primary ear (LA) is a major contributing factor to plant architecture in maize. The yield of leafy maize, which has extra LA compared to normal maize, is higher than normal maize in some regions. One major concern is that increasing LA may be accompanied by increased plant height and/or flowering time. Using an F_(2:3)population comprising 192 families derived from a leafy maize line and a normal maize line, an association population comprising 437 inbred maize lines, and a pair of near-isogenic maize lines, we mapped the quantitative trait loci (QTL) associated with LA and assessed its genetic relationship with flowering time and plant height. Ten QTL with an additive and dominant effect, 18 pairs of interacting QTL in the F_(2:3)population and seventeen significant SNPs in the association population were detected for LA. Two major QTL, qLA3-4 and qLA7-1 , were repeatedly detected and explained a large proportion of the phenotypic variation. The qLA3-4 was centered on lfy1 , which is a dominant gene underlying extra leaves above the ear in leafy maize. Four LA QTL were found to overlap with flowering time and/or plant height, which suggested that these QTL might have a pleiotropic effect. The pleiotropy of the lfy1 locus on LA, flowering time and plant height were validated by near-isogenic line analysis. These results enhance our understanding of the genetic architecture affecting maize LA and the development of maize hybrids with increased LA.
机译:初生穗(LA)上方的叶数是玉米植物结构的主要因素。与普通玉米相比,LA含量更高的多叶玉米单产在某些地区要高于普通玉米。一个主要的担心是LA的增加可能伴随着植物高度和/或开花时间的增加。我们使用F_(2:3)种群,该种群包含来自多叶玉米品系和正常玉米品系的192个科,包括437个近交玉米品系的关联种群,以及一对近等基因玉米品系,我们绘制了数量性状基因座( QTL)与LA相关,并评估其与开花时间和株高的遗传关系。检测到10个具有加性和显性作用的QTL,F_(2:3)群体中18对相互作用的QTL和关联群体中的17个重要SNP。重复检测到两个主要的QTL qLA3-4和qLA7-1,并解释了很大一部分的表型变异。 qLA3-4以lfy1为中心,lfy1是叶状玉米穗上方多余叶片下方的一个显性基因。发现四个LA QTL与开花时间和/或株高重叠,这表明这些QTL可能具有多效性。通过近等基因系分析验证了lfy1基因座在洛杉矶的多效性,开花时间和株高。这些结果增强了我们对影响玉米LA的遗传结构以及LA增加的玉米杂交种的发展的理解。

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