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High-resolution mapping and characterization of qRgls2, a major quantitative trait locus involved in maize resistance to gray leaf spot

机译:qRgls2的高分辨率作图和鉴定,qRgls2是玉米对灰叶斑病抗性的主要定量性状基因座

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Background Gray leaf spot (GLS) caused by Cercospora zeae-maydis (Czm) or Cercospora zeina (Cz) is a devastating maize disease and results in substantial yield reductions worldwide. GLS resistance is a quantitatively inherited trait. The development and cultivation of GLS-resistant maize hybrids are the most cost-effective and efficient ways to control this disease. Results We previously detected a major GLS resistance QTL, qRgls2, in bin 5.03–04, which spans the whole centromere of chromosome 5 encompassing a physical distance of ~110-Mb. With advanced backcross populations derived from the cross between the resistant Y32 and susceptible Q11 inbred lines, a sequential recombinant-derived progeny testing strategy was adapted to fine map qRgls2. We narrowed the region of qRgls2 from an initial ~110-Mb to an interval of ~1-Mb, flanked by the markers G346 and DD11. qRgls2 showed predominantly additive genetic effects and significantly increased the resistance percentage by 20.6 to 24.6% across multiple generations. A total of 15 genes were predicted in the mapped region according to the 5b.60 annotation of the maize B73 genome v2. Two pieces of the mapped qRgls2 region shared collinearity with two distant segments on maize chromosome 4. Conclusions qRgls2, a major QTL involved in GLS resistance, was mapped to a ~1-Mb region close to the centromere of chromosome 5. There are 15 predicted genes in the mapped region. It is assumed that qRgls2 could be widely used to improve maize resistance to GLS.
机译:背景玉米角斑病(Czcos)或玉米角斑病(Cz)引起的灰叶斑病(GLS)是毁灭性的玉米病,导致全球范围内的单产大幅下降。 GLS抗性是数量上遗传的特征。抗GLS玉米杂交种的开发和栽培是控制该病害的最经济有效的方法。结果我们先前在bin 5.03–04中检测到了主要的GLS抗性QTL qRgls2,该QTL跨越5号染色体的整个着丝粒,物理距离约为110 Mb。利用来自抗性Y32和易感Q11自交系之间杂交的高级回交群体,采用了顺序重组衍生后代测试策略,以对qRgls2进行精细定位。我们将qRgls2的区域从最初的〜110-Mb缩小到〜1-Mb的间隔,两侧是标记G346和DD11。 qRgls2显示出主要的累加遗传效应,并在多个世代中显着提高了20.6%至24.6%的抗性百分比。根据玉米B73基因组v2的5b.60注释,在映射区域中总共预测了15个基因。两条映射的qRgls2区与玉米第4号染色体上的两个远段共有共线性。结论qRgls2是参与GLS抗性的主要QTL,被定位在靠近5号染色体着丝粒的〜1-Mb区。定位区域中的基因。假定qRgls2可广泛用于提高玉米对GLS的抗性。

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