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Calcium Biofortification: Three Pronged Molecular Approaches for Dissecting Complex Trait of Calcium Nutrition in Finger Millet (Eleusine coracana) for Devising Strategies of Enrichment of Food Crops

机译:钙的生物强化:解剖五谷子(Eleusine coracana)中钙营养复杂性状的三元分子方法以制定粮食作物富集策略

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摘要

Calcium is an essential macronutrient for plants and animals and plays an indispensable role in structure and signaling. Low dietary intake of calcium in humans has been epidemiologically linked to various diseases which can have serious health consequences over time. Major staple food-grains are poor source of calcium, however, finger millet [Eleusine coracana (L.) Gaertn.], an orphan crop has an immense potential as a nutritional security crop due to its exceptionally high calcium content. Understanding the existing genetic variation as well as molecular mechanisms underlying the uptake, transport, accumulation of calcium ions (Ca2+) in grains is of utmost importance for development of calcium bio-fortified crops. In this review, we have discussed molecular mechanisms involved in calcium accumulation and transport thoroughly, emphasized the role of molecular breeding, functional genomics and transgenic approaches to understand the intricate mechanism of calcium nutrition in finger millet. The objective is to provide a comprehensive up to date account of molecular mechanisms regulating calcium nutrition and highlight the significance of bio-fortification through identification of potential candidate genes and regulatory elements from finger millet to alleviate calcium malnutrition. Hence, finger millet could be used as a model system for explaining the mechanism of elevated calcium (Ca2+) accumulation in its grains and could pave way for development of nutraceuticals or designer crops.
机译:钙是动植物必需的大量营养素,并且在结构和信号传导中起着不可或缺的作用。从饮食上讲,人类低饮食中钙的摄入与各种疾病在流行病学上有关,随着时间的推移,这些疾病可能对健康产生严重影响。主要的主粮谷物中钙的来源较差,但是,由于其异常高的钙含量,孤儿作物小米[Eleusine coracana(L.)Gaertn。]作为营养安全作物具有巨大的潜力。了解谷物中现有的遗传变异以及吸收,运输和积累钙离子(Ca 2 + )的分子机制,对于开发生物强化钙的作物至关重要。在这篇综述中,我们彻底讨论了钙累积和转运的分子机制,强调了分子育种,功能基因组学和转基因方法的作用,以了解小米钙营养的复杂机制。目的是提供全面,最新的调节钙营养的分子机制,并通过鉴定潜在的候选基因和小米中减轻钙营养不良的调节元素,强调生物强化的重要性。因此,手指小米可以用作解释钙在其谷物中积累的机制的模型系统,并为营养保健品或名优作物的开发铺平道路。

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