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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Using SNP markers to dissect linkage disequilibrium at a major quantitative trait locus for resistance to the potato cyst nematode Globodera pallida on potato chromosome V
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Using SNP markers to dissect linkage disequilibrium at a major quantitative trait locus for resistance to the potato cyst nematode Globodera pallida on potato chromosome V

机译:使用SNP标记在主要数量性状基因座上分析连锁不平衡,以抵抗马铃薯V染色体上的马铃薯孢囊线虫Globodera pallida

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The damage caused by the parasitic root cyst nematode Globodera pallida is a major yield-limiting factor in potato cultivation . Breeding for resistance is facilitated by the PCR-based marker 'HC', which is diagnostic for an allele conferring high resistance against G. pallida pathotype Pa2/3 that has been introgressed from the wild potato species Solanum vernei into the Solanum tuberosum tetraploid breeding pool. The major quantitative trait locus (QTL) controlling this nematode resistance maps on potato chromosome V in a hot spot for resistance to various pathogens including nematodes and the oomycete Phytophthora infestans. An unstructured sample of 79 tetraploid, highly heterozygous varieties and breeding clones was selected based on presence (41 genotypes) or absence (38 genotypes) of the HC marker. Testing the clones for resistance to G. pallida confirmed the diagnostic power of the HC marker. The 79 individuals were genotyped for 100 single nucleotide polymorphisms (SNPs) at 10 loci distributed over 38 cM on chromosome V. Forty-five SNPs at six loci spanning 2 cM in the interval between markers GP21-GP179 were associated with resistance to G. pallida. Based on linkage disequilibrium (LD) between SNP markers, six LD groups comprising between 2 and 18 SNPs were identified. The LD groups indicated the existence of multiple alleles at a single resistance locus or at several, physically linked resistance loci. LD group C comprising 18 SNPs corresponded to the 'HC' marker. LD group E included 16 SNPs and showed an association peak, which positioned one nematode resistance locus physically close to the R1 gene family.
机译:寄生根孢囊线虫Globodera pallida造成的损害是马铃薯栽培中的主要产量限制因素。通过基于PCR的标记“ HC”促进了抗性育种,该标记可诊断赋予对P. Pallida致病型Pa2 / 3的高抗性的等位基因,该病已从野生马铃薯种Verlani渗入Solanum tuberosum tetraploid繁殖库。控制这种线虫抗性的主要数量性状位点(QTL)定位在马铃薯V染色体的热点上,以抵抗各种病原体,包括线虫和卵菌疫霉菌。根据HC标记的存在(41个基因型)或不存在(38个基因型)选择了79个四倍体,高度杂合的品种和育种克隆的非结构化样品。测试这些克隆对G. pallida的抗性证实了HC标志物的诊断能力。对这79名个体进行基因分型,以10个基因座的100个单核苷酸多态性(SNP)进行基因分型,分布在V染色体上的38 cM上。六个基因座的45个SNP,在标记GP21-GP179之间的间隔中跨越2 cM与对G. pallida的抗性相关。基于SNP标记之间的连锁不平衡(LD),鉴定了包含2至18个SNP的六个LD组。 LD组表明在一个抗性位点或几个物理连锁的抗性基因座上存在多个等位基因。包括18个SNP的LD组C对应于“ HC”标记。 LD组E包含16个SNP,并显示一个缔合峰,该峰位于一个线虫抗性基因座,其物理上靠近R1基因家族。

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