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Genetic Analysis of Resistance to Leaf Rust and Yellow Rust in Spring Wheat Cultivar Kenya Kongoni

机译:春小麦品种肯尼亚Kongoni抗叶锈病和黄锈病的遗传分析

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The Kenyan wheat (Triticum aestivum L.) 'Kenya Kongoni' exhibits high levels of adult plant resistance (APR) to leaf rust (LR) and yellow rust (YR). We determined the genomic regions associated with LR and YR resistance in a population of 148 recombinant inbred lines generated from a cross between 'Avocet-YrA' and Kenya Kongoni. Field experiments to characterize APR to LR and YR were conducted in four and two Mexican or Uruguayan environments, respectively. A linkage map was constructed with 438 diversity arrays technology and 16 simple-sequence repeat markers by JoinMap 4.1 software. Genetic analyses showed that resistance to both rusts was determined by four to five APR genes, including Lr46/Yr29 and Sr2/Lr27/Yr30. Quantitative trait loci (QTL) analysis indicated that pleiotropic APR loci QYLr.cim-1BL corresponding to Lr46/Yr29 and QYLr.cim-7BL that is a putative novel QTL accounted for 5 to 57% and 12 to 35% of the phenotypic variation for resistance to LR and YR, respectively. These loci, in combination with another three LR QTL and two YR QTL, respectively, conferred high levels of resistance to both LR and YR in wheat under Mexican and Uruguayan environments. Among other detected QTL, QLr.cim-1DS, QLr.cim-2BL, and QYLr.icm-7BL may be new loci for APR to both rusts in common wheat.
机译:肯尼亚小麦(Triticum aestivum L.)'Kenya Kongoni'表现出高水平的成年植物对叶锈病(LR)和黄锈病(YR)的抗性(APR)。我们确定了从“ Avocet-YrA”和肯尼亚Kongoni之间杂交产生的148个重组自交系群体中与LR和YR抗性相关的基因组区域。分别在四个和两个墨西哥或乌拉圭环境中进行了表征LR和YR的APR的现场实验。通过JoinMap 4.1软件使用438个多样性阵列技术和16个简单序列重复标记构建了连锁图。遗传分析表明,对两种铁锈的抗性由4至5个APR基因决定,包括Lr46 / Yr29和Sr2 / Lr27 / Yr30。数量性状基因座(QTL)分析表明,与Lr46 / Yr29和QYLr.cim-7BL对应的多效APR基因座QYLr.cim-1BL占假定表型变异的5至57%和12至35%分别对LR和YR具有抵抗力。这些基因座分别与另外三个LR QTL和两个YR QTL结合,在墨西哥和乌拉圭环境下赋予小麦对LR和YR的高水平抗性。在其他检测到的QTL中,QLr.cim-1DS,QLr.cim-2BL和QYLr.icm-7BL可能是APR对普通小麦中两种铁锈的新基因座。

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