Chitkara College of Pharmacy, Chitkara University, Punjab, India.
Chitkara College of Pharmacy, Chitkara University, Punjab, India.
Chemosphere. 2022 Feb;288(Pt 2):132533. doi: 10.1016/j.chemosphere.2021.132533. Epub 2021 Oct 13.
The unprecedented setbacks and environmental complications, faced by global agro-farming industry, have led to the advent of nanotechnology in agriculture, which has been recognized as a novel and innovative approach in development of sustainable farming practices. The agricultural regimen is the "head honcho" of the world, however presently certain approaches have been imposing grave danger to the environment and human civilization. The nano-farming paradigm has successfully elevated the growth and development of plants, parallel to the production, quality, germination/transpiration index, photosynthetic machinery, genetic progression, and so on. This has optimized the traditional farming into precision farming, utilising nano-based sensors and nanobionics, smart delivery tools, nanotech facets in plant disease management, nanofertilizers, enhancement of plant adaptive potential to external stress, role in bioenergy conservation and so on. These applications portray nanorevolution as "the big cheese" of global agriculture, mitigating the bottlenecks of conventional practices. Besides the applications of nanotechnology, the review identifies the limitations, like possible harmful impact on environment, mankind and plants, as the "Achilles heel" in agro-industry, aiming to establish its defined role in agriculture, while simultaneously considering the risks, in order to resolve them, thus abiding by "technology-yes, but safety-must". The authors aim to provide a significant opportunity to the nanotech researchers, Botanists and environmentalists, to promote judicial use of nanoparticles and establish a secure and safe environment.
全球农业产业面临着前所未有的挫折和环境复杂性,这导致了纳米技术在农业中的应用,这被认为是发展可持续农业实践的一种新颖和创新的方法。农业制度是世界的“龙头老大”,然而目前某些方法正在给环境和人类文明带来严重威胁。纳米农业模式成功地促进了植物的生长和发育,同时提高了产量、质量、发芽/蒸腾指数、光合作用机制、遗传进展等。这将传统农业优化为精准农业,利用基于纳米的传感器和纳米仿生学、智能输送工具、植物疾病管理中的纳米技术、纳米肥料、增强植物对外界压力的适应潜力、在生物能源保护中的作用等。这些应用将纳米革命描绘为“全球农业的大人物”,缓解了传统实践的瓶颈。除了纳米技术的应用外,该综述还确定了其在农业中的局限性,如可能对环境、人类和植物造成的有害影响,旨在确定其在农业中的明确作用,同时考虑风险,以解决这些问题,从而遵守“技术是好的,但安全是必须的”。作者旨在为纳米技术研究人员、植物学家和环境保护主义者提供一个重要的机会,以促进对纳米粒子的合理使用,并建立一个安全和有保障的环境。