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Impact of double Zn and Se biofortification of wheat plants on the element concentrations in the grain.

机译:小麦锌和硒生物强化双重强化对籽粒中元素含量的影响。

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Optimisation of the concentrations of essential mineral elements in staple grain diet and reduction in non-essential and potentially toxic elements would considerably alleviate mineral malnutrition and improve the health of humans. Here, wheat (Triticum aestivum L.) plants were biofortified with Zn and/or Se to determine the changes across 36 elements in the grain. The element concentrations were determined by multielemental k0-instrumental neutron activation analysis (k0-INAA). In comparison to grain from non-biofortified plants, Zn fertilisation increased the grain Zn, Ca, and Mo concentrations, whereas the foliar application of Se only increased the grain Se concentrations. Double biofortification (combined Zn fertilisation and foliar Se) was more effective for the increased Se concentrations in the grain, in comparison to the Se-only biofortified plants, with the grain Zn, Ca and Mo concentrations remained at the same levels as those for the Zn-only biofortified plants. Except for Ba, Br and Rb, the concentrations of the elements analysed were below the detection limits. Double biofortification might be a feasible strategy to efficiently coordinate the mineral quality of wheat grain, although the considerable concentrations of other essential and non-essential elements should not be neglected.
机译:最优化主食中必需矿物质元素的浓度,减少不必要和潜在有毒元素的含量,将大大减轻矿物质营养不良并改善人类健康。在此,对小麦(Triticum aestivum L.)植物进行了锌和/或硒生物强化处理,以确定谷物中36种元素的变化。通过多元素k 0 -仪器中子活化分析(k 0 -INAA)测定元素浓度。与非生物强化植物的谷物相比,施锌增加了谷物的Zn,Ca和Mo浓度,而叶面施用Se仅增加了谷物的Se浓度。与仅使用硒的生物强化植物相比,双重生物强化(锌肥和叶面硒的组合)对提高谷物中的硒浓度更为有效,谷物中的锌,钙和钼的浓度保持在与谷物中相同的水平。仅有锌的生物强化植物。除Ba,Br和Rb外,所分析元素的浓度均低于检测极限。双重生物强化可能是有效协调小麦籽粒矿质的可行策略,尽管不应忽略大量其他必需和非必需元素的浓度。

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