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Genome-wide association study in Asia-adapted tropical maize reveals novel and explored genomic regions for sorghum downy mildew resistance

机译:在亚洲适应的热带玉米中进行的全基因组关联研究揭示了高粱霜霉病抗性的新颖和探索的基因组区域

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摘要

Globally, downy mildews are among the important foliar diseases of maize that cause significant yield losses. We conducted a genome-wide association study for sorghum downy mildew (SDM; Peronosclerospora sorghi) resistance in a panel of 368 inbred lines adapted to the Asian tropics. High density SNPs from Genotyping-by-sequencing were used in GWAS after controlling for population structure and kinship in the panel using a single locus mixed model. The study identified a set of 26 SNPs that were significantly associated with SDM resistance, with Bonferroni corrected P values ≤ 0.05. Among all the identified SNPs, the minor alleles were found to be favorable to SDM resistance in the mapping panel. Trend regression analysis with 16 independent genetic variants including 12 SNPs and four haplotype blocks identified SNP S2_6154311 on chromosome 2 with P value 2.61E-24 and contributing 26.7% of the phenotypic variation. Six of the SNPs/haplotypes were within the same chromosomal bins as the QTLs for SDM resistance mapped in previous studies. Apart from this, eight novel genomic regions for SDM resistance were identified in this study; they need further validation before being applied in the breeding pipeline. Ten SNPs identified in this study were co-located in reported mildew resistance genes.
机译:在全球范围内,霜霉病是导致大量单产下降的重要玉米叶病之一。我们针对适应亚洲热带地区的368个自交系进行了全基因组关联研究,研究了高粱霜霉病(SDM; Peronosclerospora sorghi)的抗性。在使用单一基因座混合模型控制面板中的种群结构和亲属关系后,通过测序进行基因分型的高密度SNP用于GWAS。该研究确定了一组与SDM耐药性显着相关的26个SNP,Bonferroni校正后的P值≤0.05。在所有已鉴定的SNP中,在定位图中发现次要等位基因对SDM抗性有利。使用16个独立的遗传变异(包括12个SNP和4个单倍型模块)进行趋势回归分析,确定2号染色体上的SNP S2_6154311具有P值2.61E-24,占表型变异的26.7%。六个SNP /单倍型与先前研究中绘制的SDM抗性QTL位于相同的染色体区间内。除此之外,在这项研究中确定了八个新的SDM抗性基因组区域。它们需要进一步验证才能应用于育种管道。在这项研究中鉴定出的十个SNP位于报告的抗霉基因中。

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