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Fungistatic Activity of Engineered Nanoparticles

机译:工程纳米颗粒的终止性活性

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The influence of various concentrations of Ag, TiO~(2), and SiO~(2)nanoparticles on conidia germination of the phytopathogenic fungus Bipolaris sorokiniana and mycelium growth of the xylotrophic fungi Pleurotus ostreatus and Neonothopanus nambi was analyzed. It is established that a decrease in conidia germination of phytopathogenic fungus and mycelium growth of the xylotrophic fungi occurs at relatively high silver nanoparticle concentrations. The appropriate ЕС~(50)values for Bipolaris sorokiniana , Pleurotus ostreatus , and Neonothopanus nambi are found to be 30, 14, and 31 mg/dm_(3), respectively. No effect of various concentrations of TiO~(2)and SiO~(2)nanoparticles on the studied cultures of fungi is highlighted. Thus, the negative impact of nanosilver on the growth of fungi at a high concentration which is untypical for objects of the environment and a lack of this influence of titanium dioxide and silica nanoparticles testifies to the high resistance of mycelial forms of organisms to engineered nanoparticles.
机译:分析了各种浓度Ag,TiO〜(2)和SiO〜(2)纳米粒子对植物疗法的植物生成的植物生殖器嗜酸孢素和菌丝植物真菌性肺炎术血管术和Neonothopanus Nambi的植物萌发的影响。正建立,在相对高的银纳米颗粒浓度下,植物致病真菌的分析萌发和菌丝植物真菌的菌丝体生长的降低发生。 Bipolaris Sorokiniana,Pleurotus ostreatus和Neonothopanus Nambi的适当Ес〜(50)值分别为30,14和31mg / dm_(3)。突出了没有各种浓度的TiO〜(2)和SiO〜(2)纳米颗粒对真菌的培养物的影响。因此,纳米iliver对高浓度的真菌生长的负面影响,这对于环境对象而言,缺乏二氧化钛和二氧化硅纳米粒子的影响缺乏对工程纳米颗粒的菌丝形式的生物体的高抗性。

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