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Genetic diversity and selection of common bean lines based on technological quality and biofortification

机译:基于技术质量和生物强化的遗传多样性和普通豆系的选择

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The development of common bean cultivars with high technological quality that are biofortified with minerals, is required to meet the demand for food with health benefits. The objectives of this study were to evaluate whether common bean genotypes differ in terms of technological and mineral biofortification traits, to study the correlations between these characters, to analyze the genetic dissimilarity of common bean genotypes, and to select superior lines for these traits. For this, 14 common bean genotypes were evaluated in experiments conducted in three growing seasons in the Rio Grande do Sul State, Brazil. A significant genotype x environment interaction was observed for technological quality (mass of 100 grains and cooking time) and biofortification traits (concentration of potassium, phosphorus, calcium, iron, zinc, and copper). Positive correlation estimates were obtained between phosphorus and potassium (r = 0.575), iron and zinc (r = 0.641), copper and iron (r = 0.729), and copper and phosphorus (r = 0.533). In the main component cluster analysis, four groups of genotypes were formed. The following lines are recommended for selection: LP 11-363 for fast-cooking, CNFC 11 948 for high iron concentration, and LEC 03-14 for high potassium, phosphorus, and calcium concentrations in grains. Common bean lines with high phosphorus and iron concentrations in grains can be indirectly selected based on higher potassium, copper, and zinc concentrations. Controlled crossings between LP 11-363 x CNFC 11 948 and LP 11-363 x LEC 03-14 are recommended to obtain segregating lines that are fast-cooking and biofortified with minerals.
机译:为了满足人们对具有健康益处的食品的需求,需要开发用矿物质进行生物强化的,具有高技术质量的普通豆品种。这项研究的目的是评估普通豆基因型在技术和矿物生物强化特征方面是否存在差异,研究这些特征之间的相关性,分析普通豆基因型的遗传差异,并为这些性状选择优良品系。为此,在巴西南里奥格兰德州三个生长季节进行的实验中,评估了14种常见的大豆基因型。在技​​术质量(100粒的质量和烹饪时间)和生物强化性状(钾,磷,钙,铁,锌和铜的浓度)方面,观察到了显着的基因型x环境相互作用。在磷和钾(r = 0.575),铁和锌(r = 0.641),铜和铁(r = 0.729)以及铜和磷(r = 0.533)之间获得正相关估计。在主成分聚类分析中,形成了四组基因型。建议选择以下行:LP 11-363用于快速烹饪,CNFC 11 948用于高铁浓度,LEC 03-14用于高钾,磷和钙。可以根据较高的钾,铜和锌浓度间接选择谷物中磷和铁含量高的普通豆系。建议使用LP 11-363 x CNFC 11 948和LP 11-363 x LEC 03-14之间的可控交叉点,以获得能够快速蒸煮并经过矿物质生物强化的隔离线。

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