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Main Effect QTL with Dominance Determines Heterosis for Dynamic Plant Height in Upland Cotton

机译:具有显性优势的主效应QTL确定陆地棉动态株高的杂种优势

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摘要

Plant height, which shows dynamic development and heterosis, is a major trait affecting plant architecture and has an indirect influence on economic yield related to biological yield in cotton. In the present study, we carried out dynamic analysis for plant height and its heterosis by quantitative trait loci (QTL) mapping at multiple developmental stages using two recombinant inbred lines (RILs) and their backcross progeny. At the single-locus level, 47 QTL were identified at five developmental stages in two hybrids. In backcross populations, QTL identified at an early stage mainly showed partial effects and QTL detected at a later stage mostly displayed overdominance effects. At the two-locus level, we found that main effect QTL played a more important role than epistatic QTL in the expression of heterosis in backcross populations. Therefore, this study implies that the genetic basis of plant height heterosis shows dynamic character and main effect QTL with dominance determines heterosis for plant height in Upland cotton.
机译:株高显示动态发育和杂种优势,是影响植物结构的主要特征,对棉花生物产量相关的经济产量具有间接影响。在本研究中,我们通过使用两个重组近交系(RIL)及其回交后代在多个发育阶段通过定量性状位点(QTL)作图对植物高度及其杂种优势进行了动态分析。在单基因座水平上,在两个杂种的五个发育阶段鉴定出47个QTL。在回交群体中,早期鉴定出的QTL主要表现出部分效应,而在后期鉴定出的QTL主要表现出显性效应。在两基因座水平上,我们发现在回交群体中杂种优势的表达中,主效应QTL比上位性QTL发挥了更重要的作用。因此,这项研究表明,植物高度杂种优势的遗传基础显示出动态特征,而具有优势的主要效应QTL决定了陆地棉植物高度杂种优势。

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