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首页> 外文期刊>BMC Genomics >Genetic diversity and association mapping of mineral element concentrations in spinach leaves
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Genetic diversity and association mapping of mineral element concentrations in spinach leaves

机译:菠菜叶中矿物质元素浓度的遗传多样性和关联图谱

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Spinach is a useful source of dietary vitamins and mineral elements. Breeding new spinach cultivars with high nutritional value is one of the main goals in spinach breeding programs worldwide, and identification of single nucleotide polymorphism (SNP) markers for mineral element concentrations is necessary to support spinach molecular breeding. The purpose of this study was to conduct a genome-wide association study (GWAS) and to identify SNP markers associated with mineral elements in the USDA-GRIN spinach germplasm collection. A total of 14 mineral elements: boron (B), calcium (Ca), cobalt (Co), copper (Cu), iron (Fe), potassium (K), magnesium (Mg), manganese (Mn), molybdenum (Mo), sodium (Na), nickel (Ni), phosphorus (P), sulfur (S), and zinc (Zn) were evaluated in 292 spinach accessions originally collected from 29 countries. Significant genetic variations were found among the tested genotypes as evidenced by the 2 to 42 times difference in mineral concentrations. A total of 2402 SNPs identified from genotyping by sequencing (GBS) approach were used for genetic diversity and GWAS. Six statistical methods were used for association analysis. Forty-five SNP markers were identified to be strongly associated with the concentrations of 13 mineral elements. Only two weakly associated SNP markers were associated with K concentration. Co-localized SNPs for different elemental concentrations were discovered in this research. Three SNP markers, AYZV02017731_40, AYZV02094133_57, and AYZV02281036_185 were identified to be associated with concentrations of four mineral components, Co, Mn, S, and Zn. There is a high validating correlation coefficient with r?>?0.7 among concentrations of the four elements. Thirty-one spinach accessions, which rank in the top three highest concentrations in each of the 14 mineral elements, were identified as potential parents for spinach breeding programs in the future. The 45 SNP markers strongly associated with the concentrations of the 13 mineral elements: B, Ca, Co, Cu, Fe, Mg, Mn, Mo, Na, Ni, P, S, and Zn could be used in breeding programs to improve the nutritional quality of spinach through marker-assisted selection (MAS). The 31 spinach accessions with high concentrations of one to several mineral elements can be used as potential parents for spinach breeding programs.
机译:菠菜是饮食中维生素和矿物质的有用来源。在全球菠菜育种计划中,育种具有高营养价值的新菠菜品种是主要目标之一,而鉴定矿物质元素浓度的单核苷酸多态性(SNP)标记对于支持菠菜分子育种是必要的。这项研究的目的是进行全基因组关联研究(GWAS),并确定与USDA-GRIN菠菜种质资源中的矿物质元素相关的SNP标记。共有14种矿质元素:硼(B),钙(Ca),钴(Co),铜(Cu),铁(Fe),钾(K),镁(Mg),锰(Mn),钼(Mo ),钠(Na),镍(Ni),磷(P),硫(S)和锌(Zn)在最初从29个国家/地区收集的292种菠菜种中进行了评估。矿物质浓度的2至42倍差异证明了受测基因型之间存在显着的遗传变异。从测序基因分型(GBS)方法中鉴定出的总共2402个SNP用于遗传多样性和GWAS。六种统计方法用于关联分析。鉴定出四十五个SNP标记与13种矿质元素的浓度密切相关。只有两个弱关联的SNP标记与K浓度相关。在这项研究中发现了针对不同元素浓度的共定位SNP。确定了三个SNP标记AYZV02017731_40,AYZV02094133_57和AYZV02281036_185与四种矿物质成分Co,Mn,S和Zn的浓度相关。在四个元素的浓度之间,具有较高的验证相关系数,其中r≥0.7。在菠菜育种计划中,有31种菠菜种在14种矿物质中均排在前三位,是菠菜育种计划的潜在父本。 45种SNP标记与B,Ca,Co,Cu,Fe,Mg,Mn,Mo,Na,Ni,P,S和Zn等13种矿物质的浓度密切相关,可用于育种程序以改善通过标记辅助选择(MAS)的菠菜营养品质。 31种菠菜种中一种或几种矿物质的高浓度可作为菠菜育种计划的潜在亲本。

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