Sundararajan Niranjana, Habeebsheriff Heena Shabnam, Dhanabalan Karthikkumar, Cong Vo Huu, Wong Ling Shing, Rajamani Ranjithkumar, Dhar Bablu Kumar
Viyen Biotech LLP Coimbatore Tamil Nadu 641031 India.
Faculty of Natural Resources and Environment Vietnam National University of Agriculture Trau Quy Gia Lam Hanoi 10766 Vietnam.
Glob Chall. 2023 Dec 25;8(1):2300187. doi: 10.1002/gch2.202300187. eCollection 2024 Jan.
Green nanotechnology, an emerging field, offers economic and social benefits while minimizing environmental impact. Nanoparticles, pivotal in medicine, pharmaceuticals, and agriculture, are now sourced from green plants and microorganisms, overcoming limitations of chemically synthesized ones. In agriculture, these green-made nanoparticles find use in fertilizers, insecticides, pesticides, and fungicides. Nanofertilizers curtail mineral losses, bolster yields, and foster agricultural progress. Their biological production, preferred for environmental friendliness and high purity, is cost-effective and efficient. Biosensors aid early disease detection, ensuring food security and sustainable farming by reducing excessive pesticide use. This eco-friendly approach harnesses natural phytochemicals to boost crop productivity. This review highlights recent strides in green nanotechnology, showcasing how green-synthesized nanomaterials elevate crop quality, combat plant pathogens, and manage diseases and stress. These advancements pave the way for sustainable crop production systems in the future.
绿色纳米技术是一个新兴领域,在将环境影响降至最低的同时,带来了经济和社会效益。纳米颗粒在医学、制药和农业中起着关键作用,目前已从绿色植物和微生物中获取,克服了化学合成纳米颗粒的局限性。在农业中,这些绿色制造的纳米颗粒可用于肥料、杀虫剂、农药和杀菌剂。纳米肥料可减少矿物质流失、提高产量并促进农业发展。其生物生产方式因环境友好和纯度高而备受青睐,既经济又高效。生物传感器有助于早期疾病检测,通过减少农药过度使用确保粮食安全和可持续农业。这种环保方法利用天然植物化学物质提高作物生产力。本综述重点介绍了绿色纳米技术的最新进展,展示了绿色合成纳米材料如何提高作物质量、对抗植物病原体以及应对疾病和压力。这些进展为未来可持续作物生产系统铺平了道路。