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Nanotechnologies for increasing the crop use efficiency of fertilizer-micronutrients

机译:纳米技术可提高农作物微量元素肥料的利用效率

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摘要

Billions of people and many soils across the planet suffer from micronutrient (MN) deficiencies impairing human health. In general, fertilization of deficient soils, according to soil test, with MNs alone and in combination with nitrogen, phosphorous, and potassium (NPK) baseline treatment increases crop yield. The soil applied fertilizer-MN use efficiency (MUE) by crops is 5 % due to a lack of synchronization between the fertilizer-MN release and their crop demand during growth. Nanotechnology and biotechnology have the potential to play a prominent place in transforming agricultural systems and food production worldwide in the coming years. MNs added in microcapsules and nanocapsules, nanomaterials (NMs), and nanoparticles (NPs) are taken up and translocated within plants when grown to maturity, increasing crop yield and MN concentration in plants. Noteworthy, many of the effects of NPs and NMs on crop yield and quality, human health, and associated environmental risks remain to be explored. Increasing MUE requires synchronizing the release of nutrients from fertilizers with crop demand during the growing season. Development of intelligent MN fertilizer delivery platforms (IMNDP) may be possible on the basis of elucidating communication signals between plant roots and soil microorganisms. Important benefits from the development and farm adoption of intelligent MN delivery platforms include increased MUE, reduced fertilizer use, and minimal toxicity and environmental impacts. This article proposes for the first time a novel model for IMNDP to enhance MUE and food quality by enabling the synchronization of MN release from fertilizers according to crop demand.
机译:地球上数十亿人和许多土壤都遭受微量营养素(MN)的缺乏,从而损害人类健康。通常,根据土壤测试,单独施用MN并与氮,磷和钾(NPK)基准处理相结合,即可对不足的土壤施肥,从而提高作物产量。由于生长期间肥料-MN释放与作物需求之间缺乏同步,因此作物对土壤的肥料-MN使用效率(MUE)<5%。在未来几年中,纳米技术和生物技术在改变世界范围内的农业系统和粮食生产方面将发挥重要作用。添加到微囊和纳米囊,纳米材料(NMs)和纳米颗粒(NPs)中的MN在成熟后被吸收并在植物内转移,从而增加了作物产量和植物中MN的浓度。值得注意的是,NP和NM对作物产量和质量,人类健康以及相关环境风险的许多影响仍有待探索。增加MUE要求在生长季节使肥料中养分的释放与作物需求同步。在阐明植物根与土壤微生物之间的通信信号的基础上,可能开发智能MN肥料输送平台(IMNDP)。智能MN输送平台的开发和农场采用的重要好处包括增加的MUE,减少的肥料用量以及最小的毒性和环境影响。本文首次提出了一种新的IMNDP模型,通过根据作物需求实现肥料中MN释放的同步化,从而提高MUE和食品质量。

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