São Paulo State University (UNESP), 14884-900, Jaboticabal, SP, Brazil.
São Paulo State University (UNESP), Rua Domingos da Costa Lopes 780, Jd. Itaipu, 17602-496, Tupã, SP, Brazil.
Plant Physiol Biochem. 2021 May;162:378-387. doi: 10.1016/j.plaphy.2021.02.020. Epub 2021 Feb 21.
Dietary zinc (Zn) deficiency is widespread globally, and is particularly prevalent in low- and middle-income countries (LMICs). Cowpea (Vigna unguiculata (L.) Walp) is consumed widely in LMICs due to its high protein content, and has potential for use in agronomic biofortification strategies using Zn. This study aimed to evaluate the effect of Zn biofortification on grain nutritional quality of 29 cowpea genotypes. Zn application did not increase cowpea yield. In 11 genotypes sucrose concentration, in 12 genotypes total sugar concentration, and in 27 genotypes storage protein concentration increased in response to Zn supply. Fifteen genotypes had lower concentrations of amino acids under Zn application, which are likely to have been converted into storage proteins, mostly comprised of albumin. Phytic acid (PA) concentration and PA/Zn molar ratio were decreased under Zn application. Six genotypes increased shoot ureides concentration in response to Zn fertilization, indicating potential improvements to biological nitrogen fixation. This study provides valuable information on the potential for Zn application to increase cowpea grain nutritional quality by increasing Zn and soluble storage protein and decreasing PA concentration. These results might be useful for future breeding programs aiming to increase cowpea grain Zn concentrations through biofortification.
膳食锌(Zn)缺乏在全球范围内普遍存在,尤其是在低收入和中等收入国家(LMICs)。由于其高蛋白含量,菜豆(Vigna unguiculata(L.)Walp)在 LMICs 中广泛食用,并且具有使用 Zn 进行农业生物强化策略的潜力。本研究旨在评估 Zn 生物强化对 29 个菜豆基因型谷物营养品质的影响。Zn 的应用并未增加菜豆的产量。在 11 个基因型中,蔗糖浓度、在 12 个基因型中总糖浓度、在 27 个基因型中储存蛋白浓度因 Zn 供应而增加。在 Zn 施用下,15 个基因型的氨基酸浓度降低,这些氨基酸可能已转化为储存蛋白,主要由白蛋白组成。施用 Zn 可降低植酸(PA)浓度和 PA/Zn 摩尔比。六种基因型在 Zn 施肥后增加了地上部尿素浓度,表明对生物固氮有潜在的改善作用。本研究提供了有价值的信息,表明通过增加 Zn 和可溶性储存蛋白以及降低 PA 浓度,Zn 应用有可能提高菜豆谷物的营养品质。这些结果可能对未来通过生物强化提高菜豆谷物 Zn 浓度的育种计划有用。