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首页> 外文期刊>Plant Physiology and Biochemistry >Iron biofortification of wheat grains through integrated use of organic and chemical fertilizers in pH affected calcareous soil
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Iron biofortification of wheat grains through integrated use of organic and chemical fertilizers in pH affected calcareous soil

机译:在受pH影响的石灰性土壤中综合使用有机肥和化学肥料对小麦籽粒进行铁强化生物强化处理

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摘要

Incidence of iron (Fe) deficiency in human populations is an emerging global challenge. This study was conducted to evaluate the potential of iron sulphate combined with biochar and poultry manure for Fe biofortification of wheat grains in pH affected calcareous soil. In first two incubation studies, rates of sulfur (S) and Fe combined with various organic amendments for lowering pH and Fe availability in calcareous soil were optimized. In pot experiment, best rate of Fe along with biochar (BC) and poultry manure (PM) was evaluated for Fe biofortification of wheat in normal and S treated low pH calcareous soil. Fe applied with BC provided fair increase in root-shoot biomass and photosynthesis up to 79, 53 and 67%, respectively in S treated low pH soil than control. Grain Fe and ferritin concentration was increased up to 1.4 and 1.2 fold, respectively while phytate and polyphenol was decreased 35 and 44%, respectively than control in treatment where Fe was applied with BC and S. In conclusion, combined use of Fe and BC could be an effective approach to improve growth and grain Fe biofortification of wheat in pH affected calcareous soil. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:人口中铁(Fe)缺乏症的发生是正在出现的全球性挑战。进行这项研究以评估硫酸铁与生物炭和家禽粪肥相结合在pH受到影响的石灰性土壤中对小麦籽粒的铁生物强化的潜力。在前两个孵化研究中,优化了硫(S)和铁的比率以及各种有机改良剂的组合,以降低石灰性土壤的pH和铁的利用率。在盆栽试验中,评估了正常和经S处理的低pH钙质土壤中小麦的Fe生物强化作用中,Fe的最佳添加率以及生物炭(BC)和家禽粪便(PM)。 S处理过的低pH土壤中,铁与BC一起提供的根茎生物量和光合作用分别显着增加,分别高达79%,53%和67%。与BC和S一起施用Fe的处理,谷物中的Fe和铁蛋白浓度分别增加了1.4倍和1.2倍,而肌醇六磷酸和多酚分别减少了35%和44%。总之,联合使用Fe和BC可以是一种在受pH影响的石灰性土壤上改善小麦生长和提高谷物铁生物强化能力的有效方法。 (C)2016 Elsevier Masson SAS。版权所有。

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