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Biosynthesized metal oxide nanoparticles for sustainable agriculture: next-generation nanotechnology for crop production, protection and management

机译:用于可持续农业的生物合成金属氧化物纳米颗粒:用于作物生产、保护和管理的下一代纳米技术

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The current agricultural sector is not only in its most vulnerable state but is also becoming a threat to our environment due to expanding population and growing food demands along with worsening climatic conditions. In addition, numerous agrochemicals presently being used as fertilizers and pesticides have low efficiency and high toxicity. However, the rapid growth of nanotechnology has shown great promise to tackle these issues replacing conventional agriculture industries. Since the last decade, nanomaterials especially metal oxide nanoparticles (MONPs) have been attractive for improving agricultural outcomes due to their large surface area, higher chemical/thermal stability and tunable unique physicochemical characteristics. Further, to achieve sustainability, researchers have been extensively working on ecological and cost-effective biological approaches to synthesize MONPs. Hereby, we have elaborated on recent successful biosynthesis methods using various plants/microbes. Furthermore, we have elucidated different mechanisms for the interaction of MONPs with plants, including their uptake/translocation/internalization, photosynthesis, antioxidant activity, and gene alteration, which could revolutionize crop productivity/yield through increased nutrient amount, photosynthesis rate, antioxidative enzyme level, and gene upregulations. Besides, we have briefly discussed about functionalization of MONPs and their application in agricultural-waste-management. We have further illuminated recent developments of various MONPs (Fe2O3/ZnO/CuO/Al2O3/TiO2/MnO2) as nanofertilizers, nanopesticides and antimicrobial agents and their implications for enhanced plant growth and pest/disease management. Moreover, the potential use of MONPs as nanobiosensors for detecting nutrients/pathogens/toxins and safeguarding plant/soil health is also illuminated. Overall, this review attempts to provide a clear insight into the latest advances in biosynthesized MONPs for sustainable crop production, protection and management and their scope in the upcoming future of eco-friendly agricultural nanotechnology.
机译:当前农业不仅在它最脆弱的国家也成为一个由于扩大威胁我们的环境人口和不断增长的粮食需求气候条件恶化。很多现在被用作农用化学品化肥和杀虫剂低效率和高毒性。纳米技术已经显示出巨大的希望这些问题取代传统农业行业。特别是金属氧化物纳米颗粒(MONPs)对提高农业的吸引力结果由于其巨大的表面积,高化学/热稳定性和可调的独特物理化学特征。实现可持续发展,研究人员一直在广泛的生态有效的生物方法合成MONPs。最近成功的生物合成方法使用各种植物或微生物。阐明不同的机制MONPs与植物的相互作用,包括他们吸收/易位/内化,光合作用、抗氧化活性和基因变更,改变作物生产力/收益率通过增加营养量、光合作用速率、抗氧化的酶水平,基因upregulations。简要讨论了功能化MONPs及其应用agricultural-waste-management。照各种MONPs的最新发展nanofertilizers nanopesticides和抗菌代理和他们对增强植物的影响生长和害虫/疾病管理。潜在使用MONPs nanobiosensors/ /毒素和病原体检测营养维护工厂/土壤健康也照亮。提供一个清晰的了解最新的进展在biosynthesized MONPs可持续作物和他们的生产、保护和管理在即将到来的未来环保的范围农业纳米技术。

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