Institute of Plant Breeding, Genetics, and Genomics, University of Georgia, Griffin Campus, Griffin, GA, 30223, USA.
Department of Crop and Soil Sciences, University of Georgia, Griffin Campus, Griffin, GA, 30223, USA.
Plant Genome. 2020 Nov;13(3):e20061. doi: 10.1002/tpg2.20061. Epub 2020 Nov 10.
Soft red winter wheat (SRWW) cultivar AGS 2038 has a high level of seedling and adult plant leaf rust (LR) resistance. To map and characterize LR resistance in AGS 2038, a recombinant inbred line (RIL) population consisting of 225 lines was developed from a cross between AGS 2038 and moderately resistant line UGA 111729. The parents and RIL population were phenotyped for LR response in three field environments at Plains and Griffin, GA, in the 2017-2018 and 2018-2019 growing seasons, one greenhouse environment at the adult-plant stage, and at seedling stage. The RIL population was genotyped with the Illumina iSelect 90K SNP marker array, and a total of 7667 polymorphic markers representing 1513 unique loci were used to construct a linkage map. Quantitative trait loci (QTL) analysis detected six QTL, QLr.ags-1AL, QLr.ags-2AS, QLr.ags-2BS1, QLr.ags-2BS2, QLr.ags-2BS3, and QLr.ags-2DS, for seedling and adult plant LR resistance. Of these, the major adult plant leaf rust resistance QTL, QLr.ags-1AL, was detected on all field and greenhouse adult plant tests and explained up to 34.45% of the phenotypic variation. QLr.ags-1AL, tightly flanked by IWB20487 and IWA4022 markers, was contributed by AGS 2038. Molecular marker analysis using a diagnostic marker linked to Lr59 showed that QLr.ags-1AL was different from Lr59, the only known LR resistance gene on 1AL. Therefore, the QTL was temporarily designated as Lr2K38. Lr2K38-linked marker IWB20487 was highly polymorphic among 30 SRWW lines and should be useful for selecting the Lr2K38 in wheat breeding programs.
软质红冬小麦(SRWW)品种 AGS 2038 具有高水平的幼苗和成株期叶片锈病(LR)抗性。为了对 AGS 2038 的 LR 抗性进行定位和特征描述,利用 AGS 2038 与中度抗性品系 UGA 111729 杂交,开发了一个由 225 个系组成的重组自交系(RIL)群体。在佐治亚州普莱因斯和格里芬的三个田间环境中,在 2017-2018 和 2018-2019 生长季节、一个温室成株期环境和幼苗期对亲本和 RIL 群体进行了 LR 反应表型分析。使用 Illumina iSelect 90K SNP 标记阵列对 RIL 群体进行了基因型分析,共鉴定到 7667 个多态性标记,代表 1513 个独特的基因座,用于构建连锁图谱。数量性状位点(QTL)分析检测到六个 QTL,分别是 QLr.ags-1AL、QLr.ags-2AS、QLr.ags-2BS1、QLr.ags-2BS2、QLr.ags-2BS3 和 QLr.ags-2DS,用于幼苗和成株期 LR 抗性。其中,主要的成株期叶片锈病抗性 QTL QLr.ags-1AL 在所有田间和温室成株期试验中均被检测到,解释了 34.45%的表型变异。QLr.ags-1AL 被 IWB20487 和 IWA4022 标记紧密包围,由 AGS 2038 提供。使用与 Lr59 连锁的诊断标记进行分子标记分析表明,QLr.ags-1AL 与 Lr59 不同,Lr59 是 1AL 上唯一已知的 LR 抗性基因。因此,该 QTL 暂时被命名为 Lr2K38。与 Lr2K38 连锁的标记 IWB20487 在 30 个 SRWW 品种中高度多态性,应该对小麦育种计划中选择 Lr2K38 有用。