首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Unravelling the Complex Genetics of Karnal Bunt (Tilletia indica) Resistance in Common Wheat (Triticum aestivum) by Genetic Linkage and Genome-Wide Association Analyses
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Unravelling the Complex Genetics of Karnal Bunt (Tilletia indica) Resistance in Common Wheat (Triticum aestivum) by Genetic Linkage and Genome-Wide Association Analyses

机译:通过遗传连锁和全基因组关联分析揭示普通小麦(Triticum aestivum)的抗Karnal Bunt(Tilletia indica)的复杂遗传

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摘要

Karnal bunt caused by Tilletia indica Mitra [syn. Neovossia indica (Mitra) Mundkur] is a significant biosecurity concern for wheat-exporting countries that are free of the disease. It is a seed-, soil-and air-borne disease with no effective chemical control measures. The current study used data from multi-year field experiments of two bi-parental populations and a genome-wide association (GWA) mapping panel to unravel the genetic basis for resistance in common wheat. Broad-sense heritability for Karnal bunt resistance in the populations varied from 0.52 in the WH542×HD29 population, to 0.61 in the WH542×W485 cross and 0.71 in a GWAS panel. Quantitative trait locus (QTL) analysis with seven years of phenotypic data identified a major locus on chromosome 3B (R2 = 27.8%) and a minor locus on chromosome 1A (R2 = 12.2%), in the WH542×HD29 population, with both parents contributing the high-value alleles. A major locus (R2 = 27.8%) and seven minor loci (R2 = 4.4–15.8%) were detected in the WH542×W485 population. GWA mapping validated QTL regions in the bi-parent populations, but also identified novel loci not previously associated with Karnal bunt resistance. Meta-QTL analysis aligned the results from this study with those reported in wheat over the last two decades. Two major clusters were detected, the first on chromosome 4B, which clustered with Qkb.ksu-4B, QKb.cimmyt-4BL, Qkb.cim-4BL, and the second on chromosome 3B, which clustered with Qkb.cnl-3B, QKb.cimmyt-3BS and Qkb.cim-3BS1. The results provide definitive chromosomal assignments for QTL/genes controlling Karnal bunt resistance in common wheat, and will be useful in pre-emptive breeding against the pathogen in wheat-producing areas that are free of the disease.
机译:Tilletia indica Mitra [syn。对于没有该病的小麦出口国而言,印度新ovo藜(Mitra)是一个重要的生物安全问题。它是一种种子,土壤和空气传播的疾病,没有有效的化学控制措施。当前的研究使用了来自两个双亲种群的多年田间试验的数据以及一个全基因组关联(GWA)作图小组,以揭示普通小麦抗性的遗传基础。人群对Karnt抗性的广义遗传力从WH542×HD29群体的0.52,到WH542×W485杂交的0.61和GWAS面板的0.71不等。定量性状基因座(QTL)分析和七年的表型数据确定了3B染色体上的主要基因座(R 2 = 27.8%)和1A染色体上的次要基因座(R 2 = 12.2%),在WH542×HD29人群中,父母双方贡献了高价值等位基因。在WH542×W485人群中检测到一个主要基因座(R 2 = 27.8%)和七个次要基因座(R 2 = 4.4–15.8%)。 GWA作图验证了双亲群体中的QTL区域,但也鉴定了以前与Karnal bunt抗性不相关的新基因座。 Meta-QTL分析使这项研究的结果与过去二十年来小麦报道的结果一致。检测到两个主要簇,第一个簇在染色体4B上,与Qkb.ksu-4B,QKb.cimmyt-4BL,Qkb.cim-4BL聚在一起,第二个簇在3B染色体上,与Qkb.cnl-3B,QKb聚在一起。 .cimmyt-3BS和Qkb.cim-3BS1。该结果为控制普通小麦Karnal bunt抗性的QTL /基因提供了明确的染色体分配,将有助于在无病小麦产区进行针对该病原体的抢先育种。

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