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首页> 外文期刊>Theoretical and Applied Genetics >Population structure and marker–trait association analysis of the US peanut (Arachis hypogaea L.) mini-core collection
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Population structure and marker–trait association analysis of the US peanut (Arachis hypogaea L.) mini-core collection

机译:美国花生(小花生)小核心种质的种群结构和标记-性状关联分析

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Peanut (Arachis hypogaea L.) is one of the most important oilseed and nutritional crops in the world. To efficiently utilize the germplasm collection, a peanut mini-core containing 112 accessions was established in the United States. To determine the population structure and its impact on marker–trait association, this mini-core collection was assessed by genotyping 94 accessions with 81 SSR markers and two functional SNP markers from fatty acid desaturase 2 (FAD2). Seed quality traits (including oil content, fatty acid composition, flavonoids, and resveratrol) were obtained through nuclear magnetic resonance (NMR), gas chromatography (GC), and high-performance liquid chromatography (HPLC) analysis. Genetic diversity and population structure analysis identified four major subpopulations that are related to four botanical varieties. Model comparison with different levels of population structure and kinship control was conducted for each trait and association analyses with the selected models verified that the functional SNP from the FAD2A gene is significantly associated with oleic acid (C18:1), linoleic acid (C18:2), and oleic-to-linoleic (O/L) ratio across this diverse collection. Even though the allele distribution of FAD2A was structured among the four subpopulations, the effect of FAD2A gene remained significant after controlling population structure and had a likelihood-ratio-based R 2 (R LR 2 ) value of 0.05 (oleic acid), 0.09 (linoleic acid), and 0.07 (O/L ratio) because the FAD2A alleles were not completely fixed within subpopulations. Our genetic analysis demonstrated that this peanut mini-core panel is suitable for association mapping. Phenotypic characterization for seed quality traits and association testing of the functional SNP from FAD2A gene provided information for further breeding and genetic research.
机译:花生(Arachis hypogaea L.)是世界上最重要的油料种子和营养作物之一。为了有效利用种质资源,在美国建立了包含112个种质的花生小核。为了确定种群结构及其对标记-性状关联的影响,通过对94个种质与81个SSR标记和两个来自脂肪酸脱氢酶2(FAD2)的功能性SNP标记进行基因分型来评估该微型核心馆藏。通过核磁共振(NMR),气相色谱(GC)和高效液相色谱(HPLC)分析获得了种子质量特征(包括油含量,脂肪酸组成,类黄酮和白藜芦醇)。遗传多样性和种群结构分析确定了与四个植物品种有关的四个主要亚群。对每种性状进行了不同水平的种群结构和亲缘关系控制的模型比较,并与所选模型进行了关联分析,验证了来自FAD2A基因的功能性SNP与油酸(C18:1),亚油酸(C18:2)显着相关),以及整个系列中油酸与亚油酸(O / L)的比率。尽管FAD2A的等位基因分布在四个亚群之间构成,但在控制种群结构后FAD2A基因的作用仍然显着,并且具有基于似然比的R 2 (R LR 2 )值为0.05(油酸),0.09(亚油酸)和0.07(O / L比),因为FAD2A等位基因未完全固定在亚群中。我们的遗传分析表明,该花生小核心板适用于关联作图。对种子品质性状的表型表征和FAD2A基因功能性SNP的关联测试为进一步的育种和遗传研究提供了信息。

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