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Epistatic and QTLxenvironment interaction effects on leaf area-associated traits in maize

机译:上位性和QTLx环境相互作用对玉米叶片面积相关性状的影响

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Leaves play important roles, including in photosynthesis and transpiration, during plant development. Therefore, studying the genetic mechanisms affecting leaf size may contribute to improving plant architecture through molecular design. However, the genetic mechanisms that underlie these traits remain poorly understood. In this study, quantitative trait loci (QTL) for traits related to leaf area were identified using a set of recombinant inbred lines evaluated in three environments by 1226 single nucleotide polymorphic markers. In total, 16 QTL were detected with four QTL showing effects of greater than 10%. Five of the QTL explained 46.02%, seven of the QTL explained 46.77%, and four of the QTL explained 30.03% of the phenotypic variance of leaf length, width and area, respectively. Additional epistatic effects were identified for all of the maize chromosomes, except for chromosomes 7, 8 and 9. All of the epistatic effects involved pairs of loci on different chromosomes. Thus, a complex network controlling these traits was found in maize. These results provide useful information for understanding the molecular mechanisms controlling maize leaf size.
机译:在植物发育过程中,叶子起着重要的作用,包括光合作用和蒸腾作用。因此,研究影响叶片大小的遗传机制可能有助于通过分子设计改善植物结构。然而,这些特征的遗传机制仍然知之甚少。在这项研究中,使用一组重组自交系鉴定了与叶面积有关的数量性状基因座(QTL),该自交系在12种单核苷酸多态性标记物的三种环境中进行了评估。总共检测到16个QTL,其中4个QTL显示效果大于10%。 QTL的五个解释了46.02%,QTL的解释了46.77%,而QTL的四个解释了叶长,宽度和面积的表型变异。除7、8和9号染色体外,所有玉米染色体都鉴定出了其他的上位效应。所有上位效应都涉及不同染色体上的基因座对。因此,在玉米中发现了控制这些性状的复杂网络。这些结果为了解控制玉米叶片大小的分子机制提供了有用的信息。

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