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Biogenic Synthesis of Silver Nanoparticles Using Phyllanthus emblica Fruit Extract and Its Inhibitory Action Against the Pathogen Acidovorax oryzae Strain RS-2 of Rice Bacterial Brown Stripe

机译:余甘子果实提取物生物合成银纳米颗粒及其对水稻细菌棕色条纹的病原性酸性稻米曲霉RS-2的抑制作用

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摘要

Biogenic synthesis of silver nanoparticles (AgNPs) using plants has become a promising substitute to the conventional chemical synthesis method. In this study, we report low-cost, green synthesis of AgNPs using fresh fruit extract of Phyllanthus emblica. The biosynthesized AgNPs was confirmed and characterized by analysis of spectroscopy profile of the UV-visible and Energy dispersive spectrophotometer, Fourier transform infrared, X-ray diffraction pattern, and electron microscopy images examination. UV-visible spectra showed a surface resonance peak of 430 nm corresponding to the formation of AgNPs, and FTIR spectra confirmed the involvement of biological molecules in AgNPs synthesis. In spherical AgNPs, the particle size ranged from 19.8 to 92.8 nm and the average diameter was 39 nm. Synthesized nanoparticles at 20 μg/ml showed remarkable antimicrobial activity in vitro against the pathogen Acidovorax oryzae strain RS-2 of rice bacterial brown stripe, while 62.41% reduction in OD600 value was observed compared to the control. Moreover, the inhibitory efficiency of AgNPs increased with the increase of incubation time. Furthermore, AgNPs not only disturbed biofilm formation and swarming ability but also increased the secretion of effector Hcp in strain RS-2, resulting from damage to the cell membrane, which was substantiated by TEM images and live/dead cell staining result. Overall, this study suggested that AgNPs can be an attractive and eco-friendly candidate to control rice bacterial disease.
机译:使用植物的生物合成银纳米颗粒(AgNPs)已成为常规化学合成方法的有希望的替代方法。在这项研究中,我们报告了使用余甘子的新鲜水果提取物进行低成本,绿色合成的AgNPs。通过分析紫外可见和能量色散分光光度计的光谱分布,傅立叶变换红外光谱,X射线衍射图和电子显微镜图像检查,确认并表征了生物合成的AgNPs。紫外可见光谱显示对应于AgNPs形成的430 nm表面共振峰,FTIR光谱证实了生物分子参与AgNPs合成。在球形AgNP中,粒径范围为19.8至92.8 nm,平均直径为39 nm。合成的20μg/ ml纳米粒子在体外对水稻细菌棕色条纹病原体米曲霉菌株RS-2具有显着的抗菌活性,而与对照相比,OD600值降低了62.41%。而且,AgNPs的抑制效率随着孵育时间的增加而增加。此外,AgNPs不仅干扰了生物膜的形成和成群能力,而且还增加了RS-2菌株中效应子Hcp的分泌,这是由于细胞膜受损所致,这可以通过TEM图像和活/死细胞染色得到证实。总体而言,这项研究表明,AgNPs可能是控制水稻细菌性疾病的一种有吸引力且环保的候选物。

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