The green silver nanoparticles (green AgNPs) exhibit an exceptional antimicrobial property against different microbes, including bacteria and fungi. The current study aimed to compare the antifungal activities of both the crude aqueous extract of or different preparations of green AgNPs biosynthesized by mixing that aqueous extract with silver nitrate (AgNO). Two preparations of the green AgNPs were synthesized either by mixing the aqueous extract of with silver nitrate (AgNO) (normal AgNPs) or either irradiation of the AgNPs, previously prepared, under Co γ-ray using chitosan (gamma-irradiated AgNPs). Characterization of different AgNPs were tested by Zeta potential analyzer, Ultraviolet (UV) Visible Spectroscopy, and Fourier-Transform Infrared (FTIR) spectrometry. Three different plant pathogenic fungi were tested, , , and sp. The antifungal activities were evaluated by Transmission Electron Microscope (TEM) for either the crude aqueous extract of at three doses (25%, 50%, and 100%) or the newly biosynthesized AgNPs, normal or gamma-irradiated. With a few exceptions, the comparative analysis revealed that the irradiated green AgNPs at all three concentrations showed a relatively stronger antifungal effect than the normal AgNPs against all the three selected fungal strains. UV-visible spectroscopy of both preparations showed surface plasmon resonance at 421 nm. TEM results showed that both AgNPs were aggregated and characterized by a unique spherical shape, however, the gamma-irradiated AgNPs were smaller than the non-irradiated AgNPs (0.007-0.026 µM vs. 0.009-0.086 µM). TEM photographs of the fungal strains treated with the two AgNPs preparations showed flaccid structures, condensed hyphae, and shrunken surface compared with control cells. The data suggested that the biosynthesized AgNPs have antifungal properties against , , and sp. These AgNPs may be considered a fungicide to protect different plants against phytopathogenic fungi.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073049 | PMC |
http://dx.doi.org/10.1016/j.sjbs.2021.12.056 | DOI Listing |
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