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Identification and epistasis analysis of quantitative trait loci for zeaxanthin concentration in maize kernel across different generations and environments

机译:不同代和环境玉米核中玉米粒子浓度定量性状基因座的鉴定及外观分析

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Zeaxanthin, a natural fat-soluble pigment, not only increases plant resistance, but also has vital significance for human health. However, quantitative trait loci (QTL) and the epistatic effects of zeaxanthin concentration in maize kernel have not been well studied. To identify QTLs and analyse the epistatic effects of zeaxanthin concentration in maize kernel, two sets of segregating generations derived from the cross between HuangC (a high zeaxanthin concentration inbred line) and Rezi1 (a low zeaxanthin concentration inbred line) were evaluated in three different environments. One major-effect QTL, qZea6a , explains 41.4–71.4% of the phenotypic variation and two QTLs, qZea4a and qZea3a , show LOD 3 for zeaxanthin concentration detected over two generations and three different environments. Four of the ten QTL pairs show epistatic effects, explaining 7.34–14.3% of the phenotypic variance. Furthermore, additivity was the major allelic action at zeaxanthin concentration QTLs located in Fsub2/sub and Fsub2:3/sub populations and plants with homozygous HuangC alleles have a strong genetic ability in enhancing zeaxanthin concentration in maize kernel. These results will contribute to understanding these complex loci better and provide awareness about zeaxanthin concentration to maize breeders and scientists involved in maize research.
机译:玉米黄芩苷,天然脂溶性颜料,不仅提高了植物抗性,而且对人类健康也有至关重要的意义。然而,量化性状基因座(QTL)和玉米核中的玉米素浓度的背景效果尚未得到很好的研究。为了鉴定QTL并分析玉米核中Zeaxanthin浓度的背景效果,在三种不同的环境中评估了两组衍生自黄色(高Zeaxanthin浓度近交系)和Rezi1(低Zeaxanthin浓度近交系)之间的横截面的分离代。 。一种主要效应QTL,Qzea6a,占所述表型变异的41.4-71.4%和两个QTLS,QZEA4A和QZEA3A,显示ZeAxanthin浓度的LOD> 3,检测到两代和三种不同的环境。十个QTL对中的四个展示了背景效果,解释了表型方差的7.34-14.3%。此外,添加性是Zeaxanthin浓度QTL的主要等位基因作用,位于F 2 和f 2:3 群体和纯合的黄牌等位基因的植物具有强大的遗传能力,增强Zeaxanthin玉米内核浓度。这些结果将有助于了解这些复杂的基因座更好,并提供对玉米育种者和参与玉米研究的科学家的意识。

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