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Multilocation dataset on seed Fe and Zn contents of bean (Phaseolus vulgaris L.) genotypes grown in Tanzania

机译:坦桑尼亚种植的菜豆(菜豆)基因型种子铁和锌含量的多位置数据集

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摘要

There are over a hundred genotypes of   L. grown and consumed in Tanzania. Currently, identification of bean genotypes containing high seed iron and zinc contents has been the focus globally for common bean iron and zinc biofortification. Diversity in seed iron and zinc contents were investigated in 99 bean genotypes grown in Tanzania to identify high seed iron and zinc-containing genotypes for use in iron and zinc biofortification. Flour obtained by grinding seeds of each bean genotypes was used in the determination of iron and zinc concentrations. Data were subjected to analysis of variance (ANOVA) to determine significant differences among common bean genotypes in terms of seed iron and zinc contents. Additive main effects and multiplicative interaction (AMMI) and genotype plus genotype by environment interaction (GGE) were conducted to determine stability and adaptation across sites (TARI-Selian, SUA, and TARI-Uyole) of bean genotypes in terms of seed iron and zinc contents. Data in this data article show that some landraces had high seed iron and zinc contents compared to release varieties thus can be used for iron and zinc genetic biofortification in common beans breeding programs. For more explanation of the data presented in this data article, please follow the related research article “ ” [1]
机译:坦桑尼亚有一百多种基因型L.当前,鉴定含高种子铁和锌含量的豆基因型已成为全球常见的豆铁和锌生物强化的重点。调查了坦桑尼亚种植的99种豆基因型中种子铁和锌含量的多样性,以鉴定出可用于铁和锌生物强化的高种子含铁和锌基因型。通过研磨每种基因型的种子获得的面粉用于测定铁和锌的浓度。对数据进行方差分析(ANOVA),以确定普通豆基因型之间在种子铁和锌含量方面的显着差异。进行了加性主效应和乘性相互作用(AMMI)以及基因型加上环境相互作用的基因型(GGE),以种子铁和锌的形式确定了大豆基因型跨位点(TARI-Selian,SUA和TARI-Uyole)的稳定性和适应性内容。该数据文章中的数据表明,与释放品种相比,某些地方品种的种子中铁和锌含量较高,因此可用于普通豆育种计划中的铁和锌基因生物强化。有关此数据文章中提供的数据的更多说明,请关注相关的研究文章“” [1]

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