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The influence of inorganic nitrogen fertilizer forms on micronutrient retranslocation and accumulation in grains of winter wheat

机译:无机氮肥形态对冬小麦籽粒微量元素迁移和积累的影响

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摘要

The fortification of cereal grains with metal micronutrients is a major target to combat human malnutrition of Fe and Zn. Based on recent studies showing that N fertilization can promote Fe and Zn accumulation in cereal grains, we investigated here the influence of nitrate- or ammonium-based N fertilization on the accumulation of Fe, Zn, and Cu as well as metal chelator pools in flag leaves and grains of winter wheat. Fertilization with either N form increased the concentrations of N and of the metal chelator nicotianamine (NA) in green leaves, while 2'-deoxymugineic acid (DMA) remained unaffected. Despite the differential response to N fertilization of NA and DMA levels in flag leaves, N fertilization remained without any significant effect on the net export of these metals during flag leaf senescence, which accounted for approximately one third of the total Fe, Zn, or Cu content in leaves. The significant increase in the accumulation of Fe, Zn, and Cu found in the grains of primarily ammonium-fertilized plants was unrelated to the extent of metal retranslocation from flag leaves. These results indicate that an increased N nutritional status of flag leaves promotes the accumulation of Fe, Zn, and Cu in flag leaves, which is accompanied by an increased pool of NA but not of DMA. With regard to the far higher concentrations of DMA relative to NA in leaves and leaf exudates, DMA may be more relevant for the mobilization and retranslocation of these metals in high-yielding wheat production.
机译:用金属微量营养素强化谷物谷物是抵抗人类铁和锌营养不良的主要目标。根据最近的研究表明,氮肥可促进谷物中铁和锌的积累,我们在这里研究了基于硝酸盐或铵盐的氮肥对铁,锌和铜以及旗粒中金属螯合剂池的积累的影响。冬小麦的叶子和谷物。任一种N形式的施肥都会增加绿叶中N和金属螯合剂烟碱胺(NA)的浓度,而2'-脱氧ugugineic酸(DMA)则不受影响。尽管对旗叶中NA和DMA水平的氮肥施肥反应不同,但氮肥仍对旗叶衰老期间这些金属的净出口没有显着影响,约占铁,锌或铜总量的三分之一。叶中的含量。在主要施用铵盐的植物的谷物中发现的铁,锌和铜的积累量的显着增加与旗叶中金属的重新转运程度无关。这些结果表明,旗叶氮素营养水平的提高促进了旗叶中Fe,Zn和Cu的积累,同时伴随着NA的增加而不是DMA的增加。关于叶片和叶片渗出物中相对于NA更高的DMA浓度,DMA可能与高产小麦生产中这些金属的动员和迁移有关。

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