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Quantitative trait locus analysis of heterosis for plant height and ear height in an elite maize hybrid zhengdan 958 by design III

机译:设计III对玉米杂交种正单958株高和穗高杂种优势的数量性状基因座分析

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Background Plant height (PH) and ear height (EH) are two important agronomic traits in maize selection breeding. F1 hybrid exhibit significant heterosis for PH and EH as compared to their parental inbred lines. To understand the genetic basis of heterosis controlling PH and EH, we conducted quantitative trait locus (QTL) analysis using a recombinant inbreed line (RIL) based design III population derived from the elite maize hybrid Zhengdan 958 in five environments. Results A total of 14 environmentally stable QTLs were identified, and the number of QTLs for Z1 and Z2 populations was six and eight, respectively. Notably, all the eight environmentally stable QTLs for Z2 were characterized by overdominance effect (OD), suggesting that overdominant QTLs were the most important contributors to heterosis for PH and EH. Furthermore, 14 environmentally stable QTLs were anchored on six genomic regions, among which four are trait-specific QTLs, suggesting that the genetic basis for PH and EH is partially different. Additionally, qPH.A-1.3 , modifying about 10 centimeters of PH, was further validated in backcross populations. Conclusions The genetic basis for PH and EH is partially different, and overdominant QTLs are important factors for heterosis of PH and EH. A major QTL qPH.A-1.3 may be a desired target for genetic improvement of maize plant height.
机译:背景植物高度(PH)和穗高(EH)是玉米选择育种中的两个重要农艺性状。与亲本近交系相比,F 1 杂种对PH和EH表现出显着的杂种优势。为了了解杂种优势控制PH和EH的遗传基础,我们在五个环境中使用了基于优良近交系(RIL)的设计III群体的数量性状基因座(QTL)分析,该群体来自于优良玉米杂交种郑单958。结果共鉴定出14个环境稳定的QTL,Z 1 和Z 2 种群的QTL分别为6个和8个。值得注意的是,Z 2 的所有八个环境稳定的QTL均具有超支效应(OD),这表明过高的QTL是造成PH和EH杂种优势的最重要因素。此外,在六个基因组区域中锚定了14个环境稳定的QTL,其中四个是性状特异性QTL,这表明PH和EH的遗传基础部分不同。此外,qPH.A-1.3修饰了大约10厘米的PH,在回交群体中得到进一步验证。结论PH和EH的遗传基础部分不同,过量的QTL是PH和EH杂种优势的重要因素。主要的QTL qPH.A-1.3可能是玉米株高遗传改良的理想目标。

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