University Institute of Biotechnology, Chandigarh University, Gharuan, Punjab, 140413, India.
Animal Nutrition Division, ICAR-National Dairy Research Institute, Karnal, 132001, India.
Environ Res. 2023 Oct 15;235:116456. doi: 10.1016/j.envres.2023.116456. Epub 2023 Jun 19.
The ever-increasing demand for food from the growing population has augmented the consumption of fertilizers in global agricultural practices. However, the excessive usage of chemical fertilizers with poor efficacy is drastically deteriorating ecosystem health through the degradation of soil fertility by diminishing soil microflora, environment contamination, and human health by inducing chemical remnants to the food chain. These challenges have been addressed by the integration of nanotechnological and biotechnological approaches resulting in nano-enabled biogenic fertilizers (NBF), which have revolutionized agriculture sector and food production. This review critically details the state-of-the-art NBF production, types, and mechanism involved in cultivating crop productivity/quality with insights into genetic, physiological, morphological, microbiological, and physiochemical attributes. Besides, it explores the associated challenges and future routes to promote the adoption of NBF for intelligent and sustainable agriculture. Furthermore, diverse applications of nanotechnology in precision agriculture including plant biosensors and its impact on agribusiness and environmental management are discussed.
不断增长的人口对食物的需求增加了全球农业实践中化肥的使用。然而,大量使用低效的化学肥料通过减少土壤微生物、环境污染和通过将化学残留物引入食物链来诱导人类健康问题,正在严重破坏生态系统健康。通过整合纳米技术和生物技术方法,解决了这些挑战,从而产生了纳米增强型生物肥料 (NBF),这彻底改变了农业部门和粮食生产。本文批判性地详细介绍了最先进的 NBF 生产、类型和涉及提高作物生产力/质量的机制,深入了解遗传、生理、形态、微生物和物理化学特性。此外,还探讨了相关的挑战和未来的路线,以促进智能和可持续农业采用 NBF。此外,还讨论了纳米技术在精准农业中的多种应用,包括植物生物传感器及其对农业综合企业和环境管理的影响。