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Genome-Wide Association Study for Identification and Validation of Novel SNP Markers for Sr6 Stem Rust Resistance Gene in Bread Wheat

机译:面包小麦 Sr6 茎锈病抗性基因新SNP标记的鉴定和验证的全基因组关联研究

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Stem rust (caused by Puccinia graminis f. sp. tritici Erikss. & E. Henn.), is a major disease in wheat ( Triticum aestivium L.). However, in recent years it occurs rarely in Nebraska due to weather and the effective selection and gene pyramiding of resistance genes. To understand the genetic basis of stem rust resistance in Nebraska winter wheat, we applied genome-wide association study (GWAS) on a set of 270 winter wheat genotypes (A-set). Genotyping was carried out using genotyping-by-sequencing and ~35,000 high-quality SNPs were identified. The tested genotypes were evaluated for their resistance to the common stem rust race in Nebraska (QFCSC) in two replications. Marker-trait association identified 32 SNP markers, which were significantly (Bonferroni corrected P < 0.05) associated with the resistance on chromosome 2D. The chromosomal location of the significant SNPs (chromosome 2D) matched the location of Sr6 gene which was expected in these genotypes based on pedigree information. A highly significant linkage disequilibrium (LD, r~(2) ) was found between the significant SNPs and the specific SSR marker for the Sr6 gene ( Xcfd43 ). This suggests the significant SNP markers are tagging Sr6 gene. Out of the 32 significant SNPs, eight SNPs were in six genes that are annotated as being linked to disease resistance in the IWGSC RefSeq v1.0. The 32 significant SNP markers were located in nine haplotype blocks. All the 32 significant SNPs were validated in a set of 60 different genotypes (V-set) using single marker analysis. SNP markers identified in this study can be used in marker-assisted selection, genomic selection, and to develop KASP (Kompetitive Allele Specific PCR) marker for the Sr6 gene. Highlights Novel SNPs for Sr6 gene, an important stem rust resistant gene, were identified and validated in this study. These SNPs can be used to improve stem rust resistance in wheat.
机译:茎锈病(由小麦锈病(Puccinia graminis f。sp。tritici Erikss。&E. Henn。引起))是小麦(小麦)的主要病害。但是,近年来由于天气以及抗性基因的有效选择和基因金字塔作用,在内布拉斯加州很少发生这种病。为了了解内布拉斯加州冬小麦抗茎锈病的遗传基础,我们对270种冬小麦基因型(A组)进行了全基因组关联研究(GWAS)。通过测序进行基因分型,鉴定出约35,000个高质量SNP。两次重复评估被测基因型对内布拉斯加州普通茎锈病的抵抗力(QFCSC)。标记-性状关联鉴定出32个SNP标记,这些标记与2D染色体的抗性显着相关(Bonferroni校正P <0.05)。根据谱系信息,在这些基因型中,重要的SNP(染色体2D)的染色体位置与Sr6基因的位置匹配。在Sr6基因(Xcfd43)的重要SNP与特定SSR标记之间发现了高度重要的连锁不平衡(LD,r〜(2))。这表明重要的SNP标记物正在标记Sr6基因。在32个重要的SNP中,有6个基因中的8个SNP在IWGSC RefSeq v1.0中被注释为与疾病抗性相关。 32个重要的SNP标记位于9个单倍型区。使用单标记分析在一组60种不同的基因型(V组)中验证了所有32个重要SNP。在这项研究中确定的SNP标记可用于标记辅助选择,基因组选择,并开发Sr6基因的KASP(竞争性等位基因特异性PCR)标记。要点:本研究鉴定并验证了Sr6基因(一种重要的抗茎锈病基因)的新型SNP。这些SNP可用于提高小麦的茎杆抗锈性。

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