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X-ray fluorescence microscopy of zinc localization in wheat grains biofortified through foliar zinc applications at different growth stages under field conditions

机译:通过在不同生长阶段的叶片锌应用中,在田间条件下通过叶面锌应用生物锌的锌定位X射线荧光显微镜显微镜

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摘要

Aim: Biofortification of wheat with zinc (Zn) through foliar Zn application has been proposed as an agronomic strategy to increase grain Zn concentration, which could serve as a nutritional intervention in regions with dietary Zn deficiency. Methods: Bread wheat (Triticum aestivum L.) was biofortified through foliar Zn applications at different growth stages. The concentration of Zn and associated micronutrient in harvested whole grains was determined by ICP-OES. Synchrotron-based X-ray fluorescence microscopy (XFM) was then used to investigate the localization of Zn and associated micronutrients in cross sections of these grains. Results: The concentration of Zn and other micronutrients (Mn, Fe, and Cu) was higher in grains treated with foliar Zn during grain-filling (early milk/dough) than those treated at stem elongation. The increase in Zn concentration of wheat grain with foliar application during grain-filling can be attributed to the intense localization of Zn in the aleurone layer, modified aleurone, crease tissue, vascular bundle, and endosperm cavity, and to a modest localization in endosperm, which is the most dominant grain tissue. These tissues and the Zn they contain are presumed to remain after milling and can potentially increase the Zn concentration in wheat flour. Conclusions: By using XFM, it was shown that foliar Zn spray represents an important agronomic tool for a substantial Zn enrichment of different fractions of wheat grain, especially the endosperm. Further investigation of the chemical speciation of Zn in the endosperm is recommended to assess Zn bioavailability in harvested whole grain of wheat that has been biofortified through different timing of foliar Zn application.
机译:目的:通过叶面Zn应用的小麦与锌(Zn)生物化为增加谷物Zn浓度的农艺策略,这可以作为饮食Zn缺乏的地区营养干预。方法:面包小麦(Triticum aestivum L)通过不同的生长阶段通过叶面Zn应用生物侵入。通过ICP-OES测定收获的全晶中Zn的浓度和相关的微量营养素。然后使用同步基于X射线荧光显微镜(XFM)来研究这些晶粒的横截面中Zn的定位和相关的微量营养素。结果:在籽粒填充(早期乳/面团)期间,用叶面Zn处理的晶粒浓度和其他微量营养素(Mn,Fe和Cu)的浓度高于茎伸长率处理的颗粒。在籽粒填充过程中具有叶面施用的小麦颗粒的Zn浓度的增加可归因于Zn中的Zn在阿列酮层中的强烈定位,改性的阿仑酮,折痕组织,血管束和胚乳腔中,以及胚乳中的适度局部化,这是最占优势的谷物组织。这些组织和它们含有的Zn被假定在研磨后保留,并且可以潜在地增加小麦粉中的Zn浓度。结论:通过使用XFM,表明叶面Zn喷雾代表了一种重要的农艺工具,用于小麦谷物的不同级数,特别是胚乳的实质性Zn富集。建议进一步研究胚乳中Zn中Zn的化学品质,以评估通过叶面锌应用的不同时间生物侵入的收获的全粒小麦中的Zn生物利用度。

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