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Agronomic fortification of rice and wheat grains with zinc for nutritional security

机译:锌对水稻和小麦籽粒的农艺强化,以确保营养安全

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摘要

Zinc (Zn) deficiency is the most widespread micronutrient deficiency in crop plants and humans. Low intake of Zn through diet appears to be the major reason for the widespread prevalence of Zn deficiencies in human populations. Application of Zn fertilizer in soil having low Zn increased the grain yield in wheat up to 6.4-50.1%. However, soil Zn application increased the grain yield of rice only up to 7.2-14.8%. Soil having sufficient Zn had no or little effect on grain yield with soil Zn application. The application of foliar Zn with or without propiconazole resulted in significant increases in grain Zn irrespective of soil Zn status. Application of foliar Zn along with propiconazole at earing and milk stages proved beneficial in increasing grain Zn content in both rice and wheat. Hence agronomic biofortification is possible and could be considerably economical if used along with a fungicide depending upon appearance of a disease.
机译:锌(Zn)缺乏症是农作物和人类中最普遍的微量营养素缺乏症。饮食中锌的低摄入似乎是人群中普遍缺乏锌的主要原因。在低锌土壤中施用锌肥可使小麦的籽粒增产达6.4-50.1%。然而,土壤锌的施用仅使水稻的籽粒产量提高了7.2-14.8%。锌含量高的土壤对锌产量的影响不大或几乎没有。不论土壤中的锌状态如何,叶面锌在有或没有丙康唑的情况下都导致锌的显着增加。在穗期和乳期施用叶面锌和丙环唑有利于增加稻米和小麦中的锌含量。因此,农艺生物强化是可能的,并且如果与杀真菌剂一起使用取决于疾病的外观,则可能是相当经济的。

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