Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang, Hebei 050021; University of Chinese Academy of Sciences, Beijing, 100049, China; and Department of Plant Pathology, Washington State University, Pullman, WA 99164-6430.
Department of Plant Pathology, Washington State University, Pullman, WA 99164-6430.
Plant Dis. 2019 Jan;103(1):51-58. doi: 10.1094/PDIS-03-18-0470-RE. Epub 2018 Nov 2.
Stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst), is one of the most destructive diseases of wheat worldwide. The disease is most preferably managed by developing and growing cultivars with high-level, durable resistance. To achieve high-level and long-lasting resistance, we developed a wheat line, RIL-Yr64/Yr15, by pyramiding Yr64 and Yr15, both on the chromosome 1BS and providing high resistance to all tested Pst races. To validate RIL-Yr64/Yr15 possessing both genes, we crossed it to Avocet S (AvS). The F RILs from this cross were phenotyped with Pst races under controlled greenhouse conditions and also under natural Pst infection in the field. The population was genotyped with SSR markers previously reported to be linked to the resistance gene loci and with additional SSR and SNP-KASP markers along chromosome 1B. Both phenotype and genotype data confirmed the copresence of Yr64 and Yr15 in RIL-Yr64/Yr15, and the high-resolution linkage map dissected the chromosomal regions and traced their origins. New lines possessing these genes were selected from the F population of cross AvS × RIL-Yr64/Yr15 by marker-assisted selection. These lines with the two highly effective genes should be more useful than individual gene lines for developing high-level, durable resistant wheat cultivars.
条锈病,由条形柄锈菌小麦专化型(Pst)引起,是全球小麦最重要的破坏性病害之一。通过开发和种植具有高水平、持久抗性的品种是最优选的管理方法。为了实现高水平和持久的抗性,我们通过在 1BS 染色体上叠加 Yr64 和 Yr15 两种基因,培育出了小麦系 RIL-Yr64/Yr15,该基因对所有测试的 Pst 菌株均具有高度抗性。为了验证 RIL-Yr64/Yr15 同时拥有这两个基因,我们将其与阿沃塞特 S(AvS)杂交。从这个杂交中获得的 F RIL 系在受控温室条件下用 Pst 菌株进行表型分析,也在田间自然感染 Pst 的情况下进行表型分析。该群体使用先前报道与抗性基因座连锁的 SSR 标记以及沿 1B 染色体的其他 SSR 和 SNP-KASP 标记进行基因型分析。表型和基因型数据均证实了 RIL-Yr64/Yr15 中同时存在 Yr64 和 Yr15,并且高分辨率连锁图谱解析了染色体区域并追踪了它们的来源。通过标记辅助选择,从 AvS×RIL-Yr64/Yr15 的 F 群体中选择了具有这些基因的新系。这些具有两个高效基因的系应该比单个基因系更有助于开发高水平、持久抗性的小麦品种。