El-Saadony Mohamed T, ALmoshadak Ameina S, Shafi Manal E, Albaqami Najah M, Saad Ahmed M, El-Tahan Amira M, Desoky El-Sayed M, Elnahal Ahmed S M, Almakas Aisha, Abd El-Mageed Taia A, Taha Ayman E, Elrys Ahmed S, Helmy Ayman M
Department of Agricultural Microbiology, Faculty of Agriculture, Zagazig University, Zagazig 44511, Egypt.
Department of Biological Sciences, Botany (Ecophysiology, chemotexnomy), King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Saudi J Biol Sci. 2021 Dec;28(12):7349-7359. doi: 10.1016/j.sjbs.2021.08.032. Epub 2021 Aug 18.
Nanotechnology has received much attention because of its distinctive properties and many applications in various fields. Nanotechnology is a new approach to increase agricultural production with premium quality, environmental safety, biological support, and financial stability. Ecofriendly technology is becoming progressively important in modern agricultural applications as alternatives to traditional fertilizers and pesticides. Nanotechnology offers an alternative solution to overcome the disadvantages of conventional agriculture. Therefore, recent developments in using nanoparticles (NPs) in agriculture should be studied. This review presented a novel overview about the biosynthesis of NPs, using NPs as nano-fertilizers and nano-pesticides, the applications of NPs in agriculture, and their role in enhancing the function of biofactors. We also, show recent studies on NPs-plant interactions, the fate and safety of nanomaterials in plants, and NPs' function in alleviating the adverse effects of abiotic stress and heavy metal toxicity. Nano-fertilizers are essential to reduce the use of inorganic fertilizers and reduce their antagonistic effects on the environment. Nano-fertilizers are more reactive, can penetrate the epidermis allowing for gradual release, and targeted distribution, and thus reducing nutrients surplus, enhancing nutrient use efficiency. We also, concluded that NPs are crucial in alleviating abiotic stress and heavy metal toxicity. However, some studies reported the toxic effects of NPs on higher plants by induction of oxidative stress signals via depositing NPs on the cell surface and in organelles. The knowledge in our review article is critical in defining limitations and future perspectives of using nano-fertilizers as an alternative to conventional fertilizers.
纳米技术因其独特的性质以及在各个领域的众多应用而备受关注。纳米技术是一种提高农业产量的新方法,具有优质、环境安全、生物支持和经济稳定等特点。生态友好型技术在现代农业应用中作为传统肥料和农药的替代品正变得越来越重要。纳米技术提供了一种替代解决方案,以克服传统农业的缺点。因此,应研究纳米颗粒(NPs)在农业中的最新发展。本综述对纳米颗粒的生物合成、将纳米颗粒用作纳米肥料和纳米农药、纳米颗粒在农业中的应用及其在增强生物因子功能方面的作用进行了新颖的概述。我们还展示了关于纳米颗粒与植物相互作用、纳米材料在植物中的归宿和安全性以及纳米颗粒在减轻非生物胁迫和重金属毒性的不利影响方面的功能的最新研究。纳米肥料对于减少无机肥料的使用以及降低其对环境的拮抗作用至关重要。纳米肥料反应性更强,能够穿透表皮实现逐渐释放和靶向分布,从而减少养分过剩,提高养分利用效率。我们还得出结论,纳米颗粒在减轻非生物胁迫和重金属毒性方面至关重要。然而,一些研究报告称,纳米颗粒通过沉积在细胞表面和细胞器上诱导氧化应激信号,对高等植物具有毒性作用。我们综述文章中的知识对于界定使用纳米肥料替代传统肥料的局限性和未来前景至关重要。