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首页> 外文期刊>Theoretical and Applied Genetics >Development of PCR-based SNP markers for rice blast resistance genes at the Piz locus
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Development of PCR-based SNP markers for rice blast resistance genes at the Piz locus

机译:基于Piz位点的稻瘟病抗性基因基于PCR的SNP标记的开发

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摘要

We assessed the utility of single-nucleotide polymorphisms (SNPs) and small insertion/deletion polymorphisms (InDels) as DNA markers in genetic analysis and breeding of rice. Toward this end, we surveyed SNPs and InDels in the chromosomal region containing the Piz and Piz-t rice blast resistance genes and developed PCR-based markers for typing the SNPs. Analysis of sequences from a blast-susceptible Japanese cultivar and two cultivars each containing one of these genes revealed that SNPs are abundant in the Piz and Piz-t regions (on average, one SNP every 248 bp), but the number of InDels was much lower. The dense distribution of SNPs facilitated the generation of SNP markers in the vicinity of the genes. For typing these SNPs, we used a modified allele-specific PCR method. Of the 49 candidate allele-specific markers, 33 unambiguously and reproducibly discriminated between the two alleles. We used the markers for mapping the Piz and Piz-t genes and evaluating the size of DNA segments introgressed from the Piz donor cultivar in Japanese near-isogenic lines containing Piz. Our findings suggest that, because of its ability to generate numerous markers within a target region and its simplicity in assaying genotypes, SNP genotyping with allele-specific PCR is a valuable tool for gene mapping, map-based cloning, and marker-assisted selection in crops, especially rice.
机译:我们评估了单核苷酸多态性(SNP)和小的插入/缺失多态性(InDels)作为水稻遗传分析和育种中的DNA标记的实用性。为此,我们调查了包含Piz和Piz-t稻瘟病抗性基因的染色体区域中的SNP和InDel,并开发了基于PCR的标记来键入SNP。对来自易受稻瘟病的日本品种和两个包含这些基因之一的两个品种的序列进行分析后发现,Piz和Piz-t地区的SNP丰富(平均每248 bp一个SNP),但是InDels的数量却很多降低。 SNP的密集分布促进了基因附近SNP标记的产生。为了键入这些SNP,我们使用了改良的等位基因特异性PCR方法。在49个候选等位基因特异性标记中,有33个明确地且可重复地区分了两个等位基因。我们使用这些标记物绘制Piz和Piz-t基因的图谱,并评估了包含Piz的日本近等基因系中Piz供体栽培品种渗入的DNA片段的大小。我们的发现表明,由于其能够在靶区域内生成大量标记的能力以及其在基因型分析中的简便性,等位基因特异性PCR的SNP基因分型是一种用于基因定位,基于图谱的克隆和标记辅助选择的有价值的工具。农作物,尤其是水稻。

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