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Identification and mapping of a new powdery mildew resistance gene on chromosome 6D of common wheat

机译:普通小麦6D染色体上新的抗白粉病基因的鉴定与定位

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摘要

Powdery mildew, caused by Blumeria graminis f. sp. tritici, is one of the most serious wheat diseases. The rapid evolution of the pathogen’s virulence, due to the heavy use of resistance genes, necessitates the expansion of resistance gene diversity. The common wheat line D57 is highly resistant to powdery mildew. A genetic analysis using an F2 population derived from the cross of D57 with the susceptible cultivar Yangmai 158 and the derived F2:3 lines indicated that D57 carries two dominant powdery mildew resistance genes. Based on mapping information of polymorphic markers identified by bulk segregant analysis, these two genes were assigned to chromosomes 5DS and 6DS. Using the F2:3 lines that segregated in a single-gene mode, closely linked PCR-based markers were identified for both genes, and their chromosome assignments were confirmed through linkage mapping. The gene on chromosome 5DS was flanked by Xgwm205 and Xmag6176, with a genetic distance of 8.3 cM and 2.8 cM, respectively. This gene was 3.3 cM from a locus mapped by the STS marker MAG6137, converted from the RFLP marker BCD1871, which was 3.5 cM from Pm2. An evaluation with 15 pathogen isolates indicated that this gene and Pm2 were similar in their resistance spectra. The gene on chromosome 6DS was flanked by co-segregating Xcfd80 and Xmag6139 on one side and Xmag6140 on the other, with a genetic distance of 0.7 cM and 2.7 cM, respectively. This is the first powdery mildew resistance gene identified on chromosome 6DS, and plants that carried this gene were highly resistant to all of the 15 tested pathogen isolates. This gene was designated Pm45. The new resistance gene in D57 could easily be transferred to elite cultivars due to its common wheat origin and the availability of closely linked molecular markers.
机译:白粉病,由Blumeria graminis f。引起。 sp。小麦,是最严重的小麦疾病之一。由于大量使用抗性基因,病原体的毒力迅速发展,因此必须扩大抗性基因的多样性。普通小麦品系D57对白粉病具有高度抗性。利用D57与感病品种扬麦158杂交后代的F2 种群及其衍生的F2:3 品系的遗传分析表明,D57携带两个主要的白粉病抗性基因。根据通过大量分离子分析法鉴定的多态性标记的作图信息,将这两个基因分配给了5DS和6DS染色体。使用以单基因模式分离的F2:3 品系,鉴定了两个基因的紧密连锁的基于PCR的标记,并通过连锁作图确认了它们的染色体分配。 5DS染色体上的基因位于Xgwm205和Xmag6176的两侧,遗传距离分别为8.3 cM和2.8 cM。该基因是由STS标记MAG6137定位的基因座的3.3 cM,由RFLP标记BCD1871转换而来,该基因距Pm2为3.5 cM。对15种病原体的评估表明,该基因和Pm2的抗性谱相似。通过将一侧的Xcfd80和Xmag6139和另一侧的Xmag6140共分离,遗传距离分别为0.7 cM和2.7 cM,使6DS染色体上的基因侧翼。这是在6DS号染色体上鉴定出的第一个抗白粉病基因,携带该基因的植物对15种经过测试的病原体均具有高度抗性。该基因被命名为Pm45。由于D57中的新抗性基因具有共同的小麦起源和紧密相连的分子标记,因此可以很容易地转移到优良品种中。

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  • 来源
    《Theoretical and Applied Genetics》 |2011年第7期|1099-1106|共8页
  • 作者单位

    Crop Genomics and Bioinformatics Centre and National Key Lab of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 Jiangsu China;

    Crop Genomics and Bioinformatics Centre and National Key Lab of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 Jiangsu China;

    Crop Genomics and Bioinformatics Centre and National Key Lab of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 Jiangsu China;

    Crop Genomics and Bioinformatics Centre and National Key Lab of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 Jiangsu China;

    Crop Genomics and Bioinformatics Centre and National Key Lab of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 Jiangsu China;

    Crop Genomics and Bioinformatics Centre and National Key Lab of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 Jiangsu China;

    Crop Genomics and Bioinformatics Centre and National Key Lab of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 Jiangsu China;

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