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Green Synthesis of Silver Nanoparticles with Culture Supernatant of a Bacterium Pseudomonas rhodesiae and Their Antibacterial Activity against Soft Rot Pathogen Dickeya dadantii

机译:罗氏假单胞菌培养上清液的绿色纳米银的合成及其对软腐病菌Dickeya dadantii的抗菌活性

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摘要

Bacterial stem and root rot disease of sweet potato caused by Dickeya dadantii recently broke out in major sweet potato planting areas in China and calls for effective approaches to control the pathogen and disease. Here, we developed a simple method for green synthesis of silver nanoparticles (AgNPs) using bacterial culture supernatants. AgNPs synthesized with the cell-free culture supernatant of a bacterium Pseudomonas rhodesiae displayed the characteristic surface plasmon resonance peak at 420–430 nm and as nanocrystallites in diameters of 20–100 nm determined by transmission electron microscopy, scanning electron microscopy, and X-ray diffraction spectroscopy. Functional groups associated with proteins in the culture supernatant may reduce silver ions and stabilize AgNPs. The AgNPs showed antibacterial activities against D. dadantii growth, swimming motility, biofilm formation, and maceration of sweet potato tubers whereas the culture supernatant of P. rhodesiae did not. AgNPs (12 µg∙ml−1) and AgNO3 (50 µg∙ml−1) showed close antibacterial activities. The antibacterial activities increased with the increase of AgNP concentrations. The green-synthesized AgNPs can be used to control the soft rot disease by control of pathogen contamination of sweet potato seed tubers.
机译:Dickeya dadantii引起的甘薯的细菌茎和根腐病最近在中国主要的甘薯种植区爆发,并呼吁采取有效措施控制病原体和病害。在这里,我们开发了一种使用细菌培养上清液绿色合成银纳米颗粒(AgNPs)的简单方法。用罗氏假单胞菌的无细胞培养上清液合成的AgNPs在420–430 nm处表现出特征性的表面等离振子共振峰,并通过透射电子显微镜,扫描电子显微镜和X射线确定直径为20–100 nm的纳米微晶。衍射光谱。与培养上清液中的蛋白质相关的官能团可以还原银离子并稳定AgNPs。 AgNPs显示出对D. dadantii生长,游泳运动,生物膜形成和甘薯块茎浸软的抗菌活性,而P. rhodesiae的培养上清液则没有。 AgNPs(12 µg∙ml -1 )和AgNO3(50 µg∙ml -1 )具有很强的抗菌活性。抗菌活性随AgNP浓度的增加而增加。通过控制甘薯种子块茎的病原体污染,绿色合成的AgNP可用于控制软腐病。

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