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Agronomic biofortification of zinc in rice: Influence of cultivars and zinc application methods on grain yield and zinc bioavailability

机译:水稻锌的农艺生物杂化:品种和锌应用方法对籽粒产量和锌生物利用度的影响

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摘要

Zinc biofortification in rice can be improved by altering Zn application timing and placement and cultivar choice. We made a comprehensive assessment on this, analysing Zn, Fe and phytic acid in whole grains and processed brown, white and cooked rice obtained from six cultivars raised with Zn applied through soil and/or foliar supply at different phenological stages of the crop and measuring Zn bioavailability in cooked rice. Pathways for Zn enrichment (27.4-92.6% over control) by Zn fertilization with different application protocols and cultivars were elucidated. Such enrichment of Zn was associated with depletion in Fe (6.5-29.4%) and phytic acid (14.8-30.4%). However, the loss of Zn on processing of rice grains increased on Zn fertilization (12.6-28.7 mg kg(-1)) because of a preferential allocation of applied Zn into bran and aleurone of the grains. Despite such loss, application of Zn caused a net increase in Zn bioavailability (52.2% over control) in the cooked product. Using the ranksum scoring technique, we found cultivar GB 1 and Zn supply through soil (basal) + 2 foliar applications achieved the most effective biofortfication of Zn in rice by optimizing grain yield, and enriching Zn and its bioavailability in cooked grain with least antagonism of Fe availability.
机译:通过改变Zn应用正时和放置和品种选择,可以改善水稻中的锌生物化化。我们对此进行了全面的评估,分析了Zn,Fe和植酸,并从六种品种施用的六种品种,通过土壤和/或叶片供应在作物和测量的不同鉴别阶段施用熟米的Zn生物利用度。通过Zn施肥的Zn富集(27.4-92.6%的对照)Zn施肥与不同施用方案和品种的途径进行了阐明。这种富集的Zn与Fe(6.5-29.4%)和植酸(14.8-30.4%)的耗尽有关。然而,由于施加Zn的优先将应用的Zn分配到谷物的麸皮和谷物的糠酮的优先分配,Zn粒子加工损失增加(12.6-28.7mg kg(-1))。尽管存在这种损失,但Zn的应用在烹饪产品中引起Zn生物利用度(52.2%的52.2%的控制)增加。使用RankSum评分技术,通过优化谷物产量,烹饪谷物中的玉米液中,我们发现品种GB 1和Zn供应通过土壤(基础)+ 2叶面应用,通过优化谷物产量,富含Zn及其在熟谷物中的生物利用度FE供货情况。

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