Nandini Boregowda, Mawale Kiran S, Giridhar Parvatam
Plant Cell Biotechnology Department, CSIR-Central Food Technological Research Institute (CFTRI), Mysuru, Karnataka 570020 India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002 India.
3 Biotech. 2023 Mar;13(3):73. doi: 10.1007/s13205-023-03470-w. Epub 2023 Feb 3.
In the modern epoch, nanotechnology took forward the agriculture and food industry with new tools that promise to increase food production sustainably. It also anticipated that it would become a driving economic force shortly. Nanotechnology has the potential to reduce agricultural inputs, enrich the soil by absorbing nutrients, manage plant diseases, and detect diseases. The aim of the present review is to cover the potential aspects of nanoscience and its trend-setting appliances in modern agriculture and food production This review focuses on the impact of various nanomaterials on plant health to improve agricultural production and its cooperative approach to food production. Nanotechnology has great potential compared to conventional approaches. The appealing path of nanotrends in the farming sector raises hopes and illuminates the route of innovative technologies to overcome various diseases in plants with an enhanced yield to meet the growing global population's need for food security.
在现代,纳米技术借助有望可持续增加粮食产量的新工具推动了农业和食品工业的发展。它还预计纳米技术不久将成为一股推动经济的力量。纳米技术有潜力减少农业投入、通过吸收养分使土壤肥沃、管理植物病害以及检测疾病。本综述的目的是涵盖纳米科学在现代农业和食品生产中的潜在方面及其引领潮流的应用。本综述聚焦于各种纳米材料对植物健康的影响,以提高农业产量及其在食品生产中的协同方法。与传统方法相比,纳米技术具有巨大潜力。农业领域纳米趋势的诱人路径带来了希望,并照亮了创新技术的道路,以克服植物中的各种病害,提高产量,满足全球不断增长的人口对粮食安全的需求。