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The Challenges and Opportunities Associated with Biofortification of Pearl Millet (Pennisetum glaucum) with Elevated Levels of Grain Iron and Zinc

机译:谷物铁和锌水平升高对小米(Pennisetum glaucum)进行生物强化带来的挑战和机遇

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摘要

Deficiencies of essential micronutrients such as iron and zinc are the cause of extensive health problems in developing countries. They adversely affect performance, productivity and are a major hindrance to economic development. Since many people who suffer from micronutrient deficiencies are dependent on staple crops to meet their dietary requirements, the development of crop cultivars with increased levels of micronutrients in their edible parts is becoming increasingly recognized as a sustainable solution. This is largely facilitated by genetics and genomic platforms. The cereal crop pearl millet (Pennisetum glaucum), is an excellent candidate for genetic improvement due to its ability to thrive in dry, semi-arid regions, where farming conditions are often unfavorable. Not only does pearl millet grow in areas where other crops such as maize and wheat do not survive, it contains naturally high levels of micronutrients, proteins and a myriad of other health benefitting characteristics. This review discusses the current status of iron and zinc deficiencies and reasons why interventions such as fortification, supplementation, and soil management are neither practicable nor affordable in poverty stricken areas. We argue that the most cost effective, sustainable intervention strategy is to biofortify pearl millet with enhanced levels of bioavailable iron and zinc. We discuss how naturally occurring genetic variations present in germplasm collections can be incorporated into elite, micronutrient rich varieties and what platforms are available to drive this research. We also consider the logistics of transgenic methods that could facilitate the improvement of the pearl millet gene pool.
机译:必需的微量营养素如铁和锌的缺乏是发展中国家广泛的健康问题的原因。它们对性能,生产率产生不利影响,并且是经济发展的主要障碍。由于许多微量营养素缺乏症患者依赖主粮作物来满足其饮食需求,因此人们逐渐认识到,在可食用部分中增加微量营养素含量的作物品种的发展已成为一种可持续的解决方案。遗传学和基因组平台极大地促进了这一过程。谷类农作物珍珠粟(Pennisetum glaucum)是遗传改良的极佳候选者,因为它有能力在干燥,半干旱地区(通常在不利的农业条件下)壮成长。珍珠粟不仅生长在玉米和小麦等其他农作物无法生存的地区,它还天然含有大量的微量营养素,蛋白质和许多其他有益健康的特性。这篇综述讨论了铁和锌缺乏的现状,以及在贫困地区为什么强化,补充和土壤管理等干预措施既不可行也不负担得起的原因。我们认为,最具成本效益,可持续的干预策略是通过增强生物利用铁和锌的含量来生物强化珍珠粟。我们讨论了种质资源中存在的自然发生的遗传变异如何被整合到富含微量营养素的优良品种中,以及哪些平台可以推动这项研究。我们还考虑了可以促进珍珠粟基因库改善的转基因方法的后勤工作。

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