利用硬粒小麦(Triticum turgidum L.)的多样性,通过遗传和农艺生物强化提高气候适应能力和微量营养素浓度

A. A. Melash, A. Vad, Bekir Bytyqi, É. Ábrahám
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摘要

大量食用低生物利用度和低锌浓度的小麦食品是锌引起的营养不良和相关健康并发症的原因。当代硬粒小麦品种在发育中的籽粒锌含量本来就很低,不能满足人体日常锌的需求。尽管有超过20亿人患有铁和锌引起的营养不良,但已经采取了各种干预措施来扭转锌引起的营养不良对人类的影响。有证据表明,农艺和遗传生物强化方法可以在更大程度上提高硬粒小麦的籽粒产量和营养品质(即锌、铁、蛋白质和维生素)。然而,缺乏直接的经验证据来证明这两种生物强化方法对改善人类健康的影响。土壤或叶面施用微量营养素肥料与氮磷钾、有机肥和高效硬粒小麦品种相结合是有效的,强调了综合土壤肥力管理(ISFM)的必要性。虽然基因生物强化是一种经济、可持续的方法,但农艺生物强化是提高硬粒小麦籽粒微量营养素浓度的直接有效途径。在干旱条件下施用含锌肥料比在正常生长条件下更有效。因此,本文为农学家和育种家提供了关于生物强化干预在提高硬粒小麦产量和丰富籽粒质量性状方面的潜力的关键信息,以确保不断增长的世界人口的粮食和营养安全。
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Harnessing diversity in durum wheat (Triticum turgidum L.) to enhance climate resilience and micronutrient concentration through genetic and agronomic biofortification
Huge consumption of wheat-driven food products with low bioavailability and small concentrations of zinc is responsible for zinc-induced malnutrition and associated health complications. The contemporary durum wheat varieties have inherently tiny zinc concentrations in developing grain, which cannot meet the daily human zinc demand. Despite the fact that over two billion people are suffering from iron and zinc-induced malnutrition, various intervention measures have been deployed to reverse the effect of zinc-induced malnutrition on humans. There are evidences that agronomic and genetic biofortification approaches can increase grain yield and nutritional quality (i.e. zinc, iron, protein, and vitamins) of durum wheat to a greater extent. However, there is a lack of direct empirical evidence for which the influence of both biofortification approaches on improving human health. Application of micronutrient-containing fertilizers either in the soil or foliarly is effective in combination with NPK, organic fertilizers coupled with efficient durum wheat varieties, emphasizing the need for integrated soil fertility management (ISFM). Although genetic biofortification is a cost-effective and sustainable approach, agronomic biofortification provides an immediate and effective route to enhancing micronutrient concentrations in durum wheat grain. The application of zinc-containing fertilizers is more effective under drought conditions than in normal growing situations. Hence, this article provides a key information for agronomists and breeders about the potential of biofortification interventions to improve durum wheat yield and enrich the grain qualitative traits to ensure food and nutritional security of the ever-increasing world population.
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