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首页> 外文期刊>Czech Journal of Genetics and Plant Breeding >Stem rust resistance in 1BL.1RS and 2RL.2BS double wheat-rye translocation lines
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Stem rust resistance in 1BL.1RS and 2RL.2BS double wheat-rye translocation lines

机译:1BL.1RS和2RL.2BS双麦黑麦易位系的抗茎锈病性。

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The wheat stem rust pathogen, Puccinia graminis f.sp. tritici , is a significant and devastating disease of wheat crops worldwide. Wheat has many wild relatives in which to source new resistance genes, including the cereal crop of rye in the tertiary genepool. The aim of this study was to assess the reaction of 1BL.1RS and 2RL.2BS double wheat-rye translocation lines to virulent stem rust races from Africa and North America. BC1F3 and BC1F4 populations from a cross between the line KR99-139 (a double wheat-rye translocation line with 1BL.1RS and 2RL.2BS) and the bread wheat cultivar Topper were used in the study. Several of the populations homozygous for 1BL.1RS and heterozygous for 2RL.2BS showed resistance and low severity adult plant resistance (20RMR-50MSS) to the African stem rust race TTKSK in the field. None of the tested populations with varying chromosome combinations showed seedling resistance to any of the tested stem rust races. Thus, these resistant populations likely carry gene/s effective at the adult plant stage since all stage resistance genes with major effect appear to be absent based on the seedling assays. Resistant lines combined three chromosomes (1RS, 2RS and 2BS) which make their direct use in breeding more complicated. Mapping studies followed by potential transfer of genes between 2R and 2B will make the identified minor genes more useful in wheat breeding.
机译:小麦茎锈病病原体,Puccinia graminisf.sp。小麦是世界范围内一种严重的破坏性小麦作物疾病。小麦有许多野生近缘种可在其中获取新的抗性基因,包括第三基因库中的黑麦谷物作物。这项研究的目的是评估1BL.1RS和2RL.2BS双麦黑麦易位系对来自非洲和北美的强茎锈病的反应。从KR99-139线之间的交叉处获得BC 1 F 3 和BC 1 F 4 种群(双本研究采用1BL.1RS和2RL.2BS的小麦-黑麦易位系和面包小麦品种Topper。 1BL.1RS纯合子和2RL.2BS纯合子的几个种群对田间非洲茎锈病TTTSK的抗性和低强度的成年植物抗性(20RMR-50MSS)。具有不同染色体组合的受试群体均未显示出对任何受试茎锈病的抗性。因此,这些抗性群体很可能携带在成年植物阶段有效的基因,因为根据幼苗分析,似乎没有所有具有主要作用的抗性基因。抗性品系结合了三个染色体(1RS,2RS和2BS),这使得它们直接用于育种更加复杂。进行图谱研究以及2R和2B之间潜在的基因转移,将使鉴定出的次要基因在小麦育种中更加有用。

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