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SNP assay to detect the ‘Hyuuga’ red-brown lesion resistance gene for Asian soybean rust

机译:SNP检测可检测亚洲大豆锈病的 Hyuuga红棕色病害抗性基因

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摘要

Asian soybean rust (ASR), caused by Phakopsora pachyrhizi Syd., has the potential to become a serious threat to soybean, Glycine max L. Merr., production in the USA. A novel rust resistance gene, Rpp?(Hyuuga), from the Japanese soybean cultivar Hyuuga has been identified and mapped to soybean chromosome 6 (Gm06). Our objectives were to fine-map the Rpp?(Hyuuga) gene and develop a high-throughput single nucleotide polymorphism (SNP) assay to detect this ASR resistance gene. The integration of recombination events from two different soybean populations and the ASR reaction data indicates that the Rpp?(Hyuuga) locus is located in a region of approximately 371 kb between and on chromosome Gm06. A set of 32 ancestral genotypes which is predicted to contain 95% of the alleles present in current elite North American breeding populations and the sources of the previously reported ASR resistance genes (Rpp1, Rpp2, Rpp3, Rpp4, Rpp5, and rpp5) were genotyped with five SNP markers. We developed a SimpleProbe assay based on melting curve analysis for SNP06-44058 which is tighly linked to the Rpp?(Hyuuga) gene. This SNP assay can differentiate plants/lines that are homozygous/homogeneous or heterozygous/heterogeneous for the resistant and susceptible alleles at the Rpp?(Hyuuga) locus.
机译:由菜豆(Phakopsora pachyrhizi Syd。)引起的亚洲大豆锈病(ASR)可能对美国的大豆Glycine max L. Merr。生产造成严重威胁。已经鉴定了来自日本大豆栽培品种Hyuuga的一种新的抗锈基因Rpp?(Hyuuga),并将其定位于大豆6号染色体(Gm06)。我们的目标是对Rpp?(Hyuuga)基因进行精细定位,并开发出高通量的单核苷酸多态性(SNP)分析法来检测该ASR抗性基因。来自两个不同大豆种群的重组事件的整合以及ASR反应数据表明Rpp?(Hyuuga)基因座位于Gm06染色体之间和染色体上大约371kb的区域。对32种祖先基因型进行了基因分型,这些基因型预计将包含当前北美优良育种种群中95%的等位基因以及先前报道的ASR抗性基因(Rpp1,Rpp2,Rpp3,Rpp4,Rpp5和rpp5)的来源。带有五个SNP标记。我们基于对SNP06-44058的熔解曲线分析开发了SimpleProbe分析,该分析与Rpp?(Hyuuga)基因密切相关。该SNP测定法可以区分在Rppα(Hyuuga)位点的抗性和易感等位基因是纯合的/纯合的或杂合的/异质的植物/品系。

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