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Association mapping of agronomic and quality traits in USDA pea single-plant collection

机译:USDA豌豆单株植物农艺性状和品质性状的关联图谱

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Association mapping is an efficient approach for the identification of the molecular basis of agronomic traits in crop plants. For this purpose in pea (Pisum sativum L.), we genotyped and phenotyped individual lines of the single-plant-derived core collection of the USDA pea collection including accessions from 330 landraces and cultivars of Pisum sativum subsp. sativum var. sativum, 28 P. sativum subsp. elatius var. elatius, 16 P. sativum subsp. sativum var. arvense, four P. sativum subsp. elatius var. pumilio, three P. abyssinicum, two P. fulvum, and one P. sativum subsp. transcaucasicum. These 384 accessions were collected or donated from a total of 64 countries. The accessions were genotyped with 256 informative SNPs using a primer extension chemistry and matrix-assisted laser desorption/ionization (MALDI-TOF) mass spectrometry assay. Genetic structure analysis showed that the collection was structured into two main groups, corresponding roughly to the cultivated types/landraces and the more primitive form species and subspecies, with some intermediates. Linkage disequilibrium of pairwise loci and population structure of the collection were analyzed, and an association analysis between SNP genotypes and 25 valuable traits such as disease resistance, seed type/color, flower color, seed low molecular weight carbohydrate concentration, and seed mineral nutrient concentration was performed using a mixed linear model. A total of 71 marker-trait associations were detected as significant with 1-34 markers per trait based on the false discovery rate (FDR 0.05). This study demonstrates the potential of using association mapping to identify markers for pea breeding.
机译:关联图谱是鉴定作物植物农艺性状的分子基础的有效方法。为此,在豌豆(Pisum sativum L.)中,我们对美国农业部豌豆(USA pea)植物的单株衍生核心种质的单系进行了基因型和表型鉴定,包括来自豌豆(Pisum sativum subsp)的330个地方品种和品种的材料。番茄sativum,28 P. sativum subsp.。伊拉迪乌斯河Elatius,16 P. sativum亚种。番茄arvense,四个P. sativum subsp。伊拉迪乌斯河pumilio,三个P. abyssinicum,两个P. fulvum和一个P. sativum亚种。高加索人。这384种材料是从总共64个国家收集或捐赠的。使用引物延伸化学和基质辅助激光解吸/电离(MALDI-TOF)质谱测定法,对这些种质与256种信息丰富的SNP进行基因分型。遗传结构分析表明,该集合被分为两个主要类别,大致对应于栽培类型/地方品种以及较原始形式的物种和亚种,并带有一些中间产物。分析成对基因座与种群结构的连锁不平衡,并分析SNP基因型与25种有价值的性状之间的关联性,如抗病性,种子类型/颜色,花色,种子低分子量碳水化合物浓度和种子矿物质营养素浓度使用混合线性模型执行。基于错误发现率(FDR <0.05),共检测到71个标记-性状关联具有显着性,每个性状具有1-34个标记。这项研究表明了使用关联映射来识别豌豆育种标记的潜力。

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