首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Fine mapping of qKRN8, a QTL for maize kernel row number, and prediction of the candidate gene
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Fine mapping of qKRN8, a QTL for maize kernel row number, and prediction of the candidate gene

机译:QKRN8的精细映射,玉米内核行数的QTL,以及候选基因的预测

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Key message qKRN8, a major QTL for kernel row number in maize, was fine mapped to an interval of similar to 520 kb on chromosome 8 and the key candidate gene was identified via expression analysis. Kernel row number (KRN) is one of the most important yield-influencing traits and is closely associated with female inflorescence development in maize (Zea mays L.). In this study, an F-2:3 population derived from a cross between V54 (low KRN line) and Lian87 (high KRN line) was used to map quantitative trait loci (QTLs) conferring KRN in maize. We identified 12 QTLs for KRN in four environments, each explaining 1.40-14.95% of phenotypic variance. Among these, one novel major QTL (named qKRN8) was mapped to bin 8.03 in all four environments, explaining 8.79-14.95% of phenotypic variation. By combining map-based cloning with progeny testing of recombinants, we ultimately mapped qKRN8 to an similar to 520 kb genomic interval, harboring six putative candidate genes. Among them, one candidate gene showed contrasted expression level in immature ears of the near-isogenic lines qKRN8(Lian87) and qKRN8(V54). These findings should facilitate molecular breeding for KRN and the further identification of the polymorphism underlying this QTL.
机译:关键消息QKRN8,玉米中的核数的主要QTL,在染色体8上映射到类似于520kB的间隔,通过表达分析鉴定关键候选基因。内核行数(Krn)是最重要的产量影响性状之一,与玉米女性花序发育密切相关(Zea Mays L.)。在该研究中,使用V54(低KRN线)和Lian87(高KRN线)之间的横桥的F-2:3种群来映射烹调Krn的定量性状基因座(QTL)。我们在四个环境中识别出12个QTL,每种环境中的krn,每种情况下都有1.40-14.95%的表型方差。其中,在所有四种环境中映射到BIN 8.03的一个新型QTL(命名QKRN8),解释了8.79-14.95%的表型变异。通过将基于地图的克隆与重组剂的后代测试相结合,我们最终将QKRN8映射到类似于520 kB基因组间隔,含有六个推定的候选基因。其中,一个候选基因在近代QKRN8(Lian87)和QKRN8(V54)的近似同学线的未成熟耳中显示出对比的表达水平。这些发现应该促进KRN的分子育种和该QTL下面的多态性的进一步鉴定。

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