Agronomic Biofortification of Plants with Iodine and Selenium: A Potential Solution for Iodine and Selenium Deficiencies.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yesim Oztekin, Zehra Buyuktuncer
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引用次数: 0

Abstract

Iodine and selenium deficiencies are widespread both in developed countries and developing countries. The soil is the fundamental source of iodine and selenium for plants, and iodine and/or selenium-depleted soil restrains the cultivation of crops to cover recommended daily intakes of iodine and selenium. Although food fortification strategies, including salt iodization, increase the dietary intake of these minerals, their global deficiencies have not been eliminated. Therefore, new strategies have been developed to prevent iodine and selenium deficiencies, and biofortification is one of them. The aim of this review is to assert the outcomes of the studies that investigate the optimum conditions for biofortification with iodine and selenium and to recognize the role of biofortification practices as a potential solution for preventing iodine and selenium deficiencies. The findings of studies show that biofortification with iodine and selenium can be a solution for iodine and selenium deficiencies. Agronomic biofortification is currently a more convenient method to increase selenium and iodine contents in plants. However, the most effective agronomic biofortification conditions are crucial to acquire biofortified food. Moreover, increasing the awareness of the producers and consumers on biofortification has a determinative role in the achievement of biofortification practices for human health. Although research about iodine and selenium biofortification has been increased, the effectiveness of biofortified foods to meet recommended daily intakes is still unknown. More research is needed to understand most effective biofortification conditions for plants and bioavailability of biofortified foods for humans.

Abstract Image

用碘和硒对植物进行农艺生物强化:碘和硒缺乏症的潜在解决方案。
碘和硒缺乏症在发达国家和发展中国家都很普遍。土壤是植物碘和硒的基本来源,缺碘和/或缺硒的土壤限制了农作物的种植,无法满足每日碘和硒的建议摄入量。尽管包括食盐加碘在内的食品营养强化战略增加了这些矿物质的膳食摄入量,但全球范围内仍未消除这些矿物质的缺乏。因此,人们制定了新的战略来预防碘和硒的缺乏,生物强化就是其中之一。本综述旨在总结有关碘和硒生物强化最佳条件的研究成果,并认识到生物强化做法作为预防碘和硒缺乏症潜在解决方案的作用。研究结果表明,碘和硒的生物强化可以解决碘和硒缺乏问题。目前,农艺生物强化是增加植物中硒和碘含量的一种更为便捷的方法。然而,要获得生物强化食品,最有效的农艺生物强化条件至关重要。此外,提高生产者和消费者对生物强化的认识,对实现有利于人类健康的生物强化做法具有决定性作用。尽管有关碘和硒生物强化的研究有所增加,但生物强化食品达到每日推荐摄入量的有效性仍是未知数。需要开展更多研究,以了解植物最有效的生物强化条件和生物强化食品对人类的生物利用率。
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来源期刊
Biological Trace Element Research
Biological Trace Element Research 生物-内分泌学与代谢
CiteScore
8.70
自引率
10.30%
发文量
459
审稿时长
2 months
期刊介绍: Biological Trace Element Research provides a much-needed central forum for the emergent, interdisciplinary field of research on the biological, environmental, and biomedical roles of trace elements. Rather than confine itself to biochemistry, the journal emphasizes the integrative aspects of trace metal research in all appropriate fields, publishing human and animal nutritional studies devoted to the fundamental chemistry and biochemistry at issue as well as to the elucidation of the relevant aspects of preventive medicine, epidemiology, clinical chemistry, agriculture, endocrinology, animal science, pharmacology, microbiology, toxicology, virology, marine biology, sensory physiology, developmental biology, and related fields.
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