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Marker–Trait Association Analysis of Iron and Zinc Concentration in Lentil (?Lens culinaris?Medik.) Seeds

机译:扁豆种子中铁和锌浓度的标记-特征关联分析

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Lentil (Lens culinaris?Medik.) seeds are relatively rich in iron (Fe) and zinc (Zn), making lentil a potential crop to aid in the global battle against human micronutrient deficiency. Understanding the genetic basis for uptake of seed Fe and Zn is required to increase sustainable concentrations of these minerals in seeds. The objectives of this study were to characterize genetic variation in seed Fe and Zn concentration and to identify molecular markers associated with these traits across diverse lentil accessions. A set of 138 cultivated lentil accessions from 34 countries were evaluated in four environments (2 sites × 2 yr) in Saskatchewan, Canada. The collection was genotyped using 1150 single-nucleotide polymorphism (SNP) markers that are distributed across the lentil genome. The germplasm tested exhibited a wide range of variation for seed Fe and Zn concentration. The marker–trait association analysis detected two SNP markers tightly linked to seed Fe and one linked to seed Zn concentration (?log10?P?≥ 4.36). Additional markers were detected at ?log10?P?≥ 3.06. A number of putative candidate genes underlying detected loci encode Fe- and Zn-related functions. This study provides insight into the genetics of seed Fe and Zn concentration of lentil and opportunities for marker-assisted selection to improve micronutrient concentration as part of micronutrient biofortification programs.
机译:小扁豆(Len culinaris?Medik。)种子相对富含铁(Fe)和锌(Zn),使小扁豆成为潜在的农作物,有助于在全球范围内对抗人类微量营养素缺乏症。需要了解摄取铁和锌种子的遗传基础,以增加种子中这些矿物质的可持续浓度。这项研究的目的是表征种子中铁和锌浓度的遗传变异,并鉴定各种扁豆品种中与这些性状相关的分子标记。在加拿大萨斯喀彻温省的四种环境(2个地点×2年)中,对来自34个国家的138个栽培扁豆种质进行了评估。使用在整个小扁豆基因组中分布的1150个单核苷酸多态性(SNP)标记进行基因分型。测试的种质对种子中铁和锌的浓度表现出很大的变化。标记-性状关联分析检测到与种子铁紧密相关的两个SNP标记和与种子锌浓度紧密相关的一个SNP标记(?log10?P?≥4.36)。在“ log10”P≥3.06处检测到其他标记。潜在的检测到的基因座的许多潜在候选基因编码Fe和Zn相关功能。这项研究提供了对扁豆种子铁和锌浓度的遗传学的了解,以及作为微营养素生物强化计划一部分的标记辅助选择以提高微营养素浓度的机会。

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