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低利用度作物中的微量营养素含量:羽扇豆甜案例。

The micronutrient content in underutilized crops: the Lupinus mutabilis sweet case.

机构信息

Programa Doctoral en Ciencias e Ingenieria Biologicas, Escuela de Posgrado, Universidad Nacional Agraria La Molina, Lima, Peru.

Laboratorio de Fisiologia Molecular de Plantas del PIPS de Cereales y Granos Nativos, Facultad de Agronomia, Universidad Nacional Agraria La Molina, Lima, Peru.

出版信息

Sci Rep. 2022 Sep 7;12(1):15162. doi: 10.1038/s41598-022-19202-8.

Abstract

Adequate intake of micronutrients is necessary to reduce widespread health issues linked to low intake of iron (Fe), zinc (Zn), boron (B), copper (Cu), and manganese (Mn). Because more than two billion people suffer from micronutrient deficiency globally, to address this problem, highly-nutritious ancestral Peruvian crops like tarwi can be an important component of food security. Thus, our work explores the tarwi micronutrient variability to select biofortified genotypes without affecting seed size and weight. Tarwi is a biofortified food because of its seeds' Fe, Zn, and B content. Furthermore, Boron showed a positive correlation between seed size and weight. At the same time, copper showed a negative correlation. Finally, six accessions (P14, P16, P21, T05, T08, and T25) that are biofortified for Fe, Zn, and B with excellent seed size and weight and with adequate levels of Cu and Mn; adding value to Peruvian biodiversity at a low cost is a starting point for a breeding program to prevent micronutrient disorders.

摘要

摄入足够的微量营养素对于减少与铁(Fe)、锌(Zn)、硼(B)、铜(Cu)和锰(Mn)摄入不足有关的广泛健康问题是必要的。由于全球有超过 20 亿人受到微量营养素缺乏的影响,为了解决这个问题,富含营养的秘鲁传统作物,如藜麦,可以成为食品安全的重要组成部分。因此,我们的工作探索了藜麦的微量营养素变异性,以选择不影响种子大小和重量的生物强化基因型。藜麦是一种生物强化食品,因为它的种子富含铁、锌和 B。此外,硼与种子大小和重量呈正相关。同时,铜呈负相关。最后,我们选择了 6 个品系(P14、P16、P21、T05、T08 和 T25),它们在铁、锌和 B 方面具有生物强化作用,同时种子大小和重量良好,铜和锰含量也充足;以低成本增加秘鲁生物多样性的价值是预防微量营养素紊乱的一个育种计划的起点。

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