首页> 外文期刊>Journal of Food Composition and Analysis >Iron-, zinc-, and magnesium-rich field peas (Pisum sativum L.) with naturally low phytic acid: A potential food-based solution to global micronutrient malnutrition.
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Iron-, zinc-, and magnesium-rich field peas (Pisum sativum L.) with naturally low phytic acid: A potential food-based solution to global micronutrient malnutrition.

机译:具有天然低植酸的富含铁,锌和镁的豌豆( Pisum sativum L.):一种潜在的基于食物的解决方案,可解决全球微量营养素营养不良的问题。

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摘要

Biofortification of commonly eaten foods with iron (Fe) and zinc (Zn) might be a solution to global "hidden hunger". This study was carried out to determine the micronutrient biofortification potential of US-grown field peas (Pisum sativum L.). We analyzed seed Fe, Zn, calcium (Ca), magnesium (Mg), total phosphorus (P), and phytic acid (PA) concentrations of six commercial field pea genotypes grown at seven locations in North Dakota, USA. These US-grown field peas were naturally rich in Fe (46-54 mg kg--1), Zn (39-63 mg kg--1), and Mg (1350-1427 mg kg--1). A single serving of field pea could provide of 28-68% the recommended daily allowance (RDA) for Fe, 36-78% of the RDA for Zn, and 34-46% of the RDA for Mg. Field pea is not a good source of Ca (622-1219 mg kg--1; 6-12% of RDA). In addition, these field peas are naturally low in PA (4.9-7.1 mg g--1 of PA or 1.4-2 mg g--1 of phytic-P) despite very high total P concentrations (3.5-5 mg g--1). Overall, field pea is a good food source of Fe, Zn, and Mg, and selection of genetic material to enrich micronutrients in conjunction with growing location may further enhance mineral concentrations
机译:用铁(Fe)和锌(Zn)对常用食品进行生物强化可能是解决全球“隐性饥饿”的一种方法。这项研究旨在确定美国种植的豌豆(Pisum sativum L.)的微营养素生物强化潜力。我们分析了在美国北达科他州七个地点种植的六种商品田豌豆基因型的种子铁,锌,钙(Ca),镁(Mg),总磷(P)和植酸(PA)的浓度。这些美国种植的豌豆天然富含Fe(46-54 mg kg -1 ),Zn(39-63 mg kg -1 )和Mg (1350-1427 mg kg -1 )。一份豌豆可以为铁提供28-68%的推荐每日允许量(RDA),为锌提供36-78%的推荐每日允许摄入量,为镁提供34-6%的RDA。豌豆不是钙的良好来源(622-1219 mg kg -1 ; RDA的6-12%)。此外,这些豌豆的PA自然较低(4.9-7.1 mg g -1 PA或1.4-2 mg g -1 phytic-P)尽管总磷浓度很高(3.5-5 mg g -1 )。总体而言,豌豆是铁,锌和镁的良好食物来源,选择遗传物质来丰富微量营养素并结合生长地点可能会进一步提高矿物质含量

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