Cummins College of Engineering for Women, Affiliated to Savitribai Phule Pune University, Pune, 411052, India.
Defence Institute of Advanced Technology, Girinagar, Pune, 411025, India.
Chemosphere. 2022 Jan;286(Pt 2):131761. doi: 10.1016/j.chemosphere.2021.131761. Epub 2021 Aug 3.
The current method of agriculture entails the usage of excessive amounts of pesticides and fertilizers. The blatant use of conventional pesticides and fertilizers over several decades has led to their bioaccumulation with adverse effects on soil biodiversity and the development of resistance by pests. With the decline in clinically useful antibiotics and increase in multi drug resistant microbes, it is imperative to develop new and effective antimicrobial therapies. Growing awareness and demand for efficacious biorational pesticides are on the rise. Silver nanoparticles are widely known antimicrobials and have been in use for several purposes for a long time. This work reviews the implications of applying silver nanoparticles in agriculture and their possible consequences. The physiological and biochemical changes in plants due to the uptake of silver nanoparticles as a consequence of its morphology, capping biomolecules and method of application are comprehensively discussed in this review article. Studies on tolerance levels or stress due to silver nanoparticles by variation in concentration/doses on diverse flora and fauna are also analyzed here. Further, phytotoxicity and genotoxicity due to the metal as well as its transformation in soil, water and sludge are taken into account. We also gauge the potential of biogenic silver nanoparticles-viable antimicrobial agents for enhanced applications in agriculture as biopesticides.
当前的农业方法需要大量使用农药和化肥。几十年来,常规农药和化肥的大量使用导致它们在土壤生物多样性中积累,并对害虫产生抗药性。随着临床上有用的抗生素减少和多药耐药微生物的增加,开发新的、有效的抗菌治疗方法势在必行。人们对有效生物合理农药的认识和需求不断提高。纳米银颗粒是众所周知的抗菌剂,长期以来一直用于多种用途。这项工作综述了将纳米银颗粒应用于农业及其可能产生的后果。本文全面讨论了由于纳米银颗粒的形态、封端生物分子和应用方法,植物对其吸收而导致的生理和生化变化。本文还分析了由于浓度/剂量变化对不同植物群和动物群的耐受性水平或因银纳米颗粒引起的胁迫。此外,还考虑了金属的植物毒性和遗传毒性及其在土壤、水和污泥中的转化。我们还评估了生物源银纳米颗粒作为生物农药在农业中增强应用的潜力,作为一种可行的抗菌剂。