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Introgression of Powdery Mildew Resistance Gene Pm56 on Rye Chromosome Arm 6RS Into Wheat

机译:黑麦6RS臂上的白粉病抗性基因Pm56导入小麦

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摘要

Powdery mildew, caused by the fungus Blumeria graminis f. sp. tritici, represents a yield constraint in many parts of the world. Here, the introduction of a resistance gene carried by the cereal rye cv. Qinling chromosome 6R was transferred into wheat in the form of spontaneous balanced translocation induced in plants doubly monosomic for chromosomes 6R and 6A. The translocation, along with other structural variants, was detected using in situ hybridization and genetic markers. The differential disease response of plants harboring various fragments of 6R indicated that a powdery mildew resistance gene(s) was present on both arms of rye chromosome 6R. Based on karyotyping, the short arm gene, designated Pm56, was mapped to the subtelomere region of the arm. The Robertsonian translocation 6AL⋅6RS can be exploited by wheat breeders as a novel resistance resource.
机译:白粉病,由真菌Blumeria graminis f。引起。 sp。 Tritici代表了世界许多地方的产量限制。在此,引入了由谷物黑麦cv携带的抗性基因。秦岭6R染色体以双倍体染色体6R和6A双重诱导的植物自发平衡转移的形式转移到小麦中。使用原位杂交和遗传标记检测了易位以及其他结构变体。带有6R各种片段的植物对疾病的反应不同,表明黑麦6R染色体的两个臂上都存在白粉病抗性基因。基于核型分析,将短臂基因Pm56定位到该臂的亚端粒区域。小麦育种家可以利用罗伯逊易位6AL⋅6RS作为一种新型抗药性资源。

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