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Efficacy of iron-biofortified crops

机译:铁强化作物的功效

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摘要

Biofortification aims to increase the content of micronutrients in staple crops without sacrificing agronomic yield, making the new varieties attractive to farmers. Food staples that provide a major energy supply in low- and middle-income populations are the primary focus. The low genetic variability of iron in the germplasm of most cereal grains is a major obstacle on the path towards nutritional impact with these crops, which is solvable only by turning to transgenic approaches. However, biofortified varieties of common beans and pearl millet have been developed successfully and made available with iron contents as high as 100 mg/kg and 80 mg/kg, respectively, two to five times greater than the levels in the regular varieties. This brief review summarizes the research to date on the bioavailability and efficacy of iron-biofortified crops, highlights their potential and limitations, and discusses the way forward with multiple biofortified crop approaches suitable for diverse cultures and socio-economic milieu. Like post-harvest iron fortification, these biofortified combinations might provide enough iron to meet the additional iron needs of many iron deficient women and children that are not covered at present by their traditional diets.
机译:生物强化的目的是在不牺牲农艺产量的情况下增加主粮中微量营养素的含量,从而使新品种对农民具有吸引力。主要食品是在中低收入人群中提供主要能源的食品。大多数谷物的种质中铁的低遗传变异性是这些作物获得营养影响的主要障碍,只有通过转基因方法才能解决。但是,已经成功开发了生物强化的普通豆和珍珠粟品种,其铁含量分别高达100 mg / kg和80 mg / kg,是常规品种中铁含量的2至5倍。这篇简短的综述总结了迄今为止对铁强化生物的生物利用度和功效的研究,强调了它们的潜力和局限性,并讨论了适用于多种文化和社会经济环境的多种强化生物方法的发展方向。像收获后的铁强化一样,这些生物强化的组合可能提供足够的铁,以满足目前传统饮食尚不能满足的许多缺铁妇女和儿童的额外铁需求。

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