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Study of the antifungal activity of Acinetobacter baumannii LCH001 in vitro and identification of its antifungal components

机译:鲍曼不动杆菌LCH001的体外抗真菌活性研究及其抗真菌成分的鉴定

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An Acinetobacter strain, given the code name LCH001 and having the potential to be an endophytic antagonist, has been isolated from healthy stems of the plant Cinnamomum camphora (L.) Presl, guided by an in vitro screening technique. The bacterium inhibited the growth of several phytopathogenic fungi such as Cryphonectria parasitica, Glomerella glycines, Phytophthora capsici, Fusarium graminearum, Botrytis cinerea, and Rhizoctonia solani. Biochemical, physiological, and 16S rDNA sequence analysis proved that it is Acinetobacter baumannii. When the filtrate from the fermentation broth of strain LCH001 was tested in vitro and in vivo, it showed strong growth inhibition against several phytopathogens including P. capsici, F. graminearum, and R. solani, indicating that suppression of the growth of the fungi was due to the presence of antifungal compounds in the culture broth. Moreover, the antifungal activity of the culture filtrate was significantly correlated with the cell growth of strain LCH001. The active metabolites in the filtrate were relatively thermally stable, but were sensitive to acidic conditions. Three antifungal compounds were isolated from the culture broth by absorption onto macropore resin, ethanol extraction, chromatography on silica gel or LH-20 columns, and crystallization. The structures of the bioactive compounds were identified by spectroscopic methods as isomers of iturin A, namely, iturin A2, iturin A3, and iturin A6. The characterization of an unusual endophytic bacterial strain LCH001 and its bioactive components may provide an alternative resource for the biocontrol of plant diseases.
机译:在体外筛选技术的指导下,从植物樟脑(Cinnamomum camphora(L.)Presl)的健康茎中分离出了一种不动杆菌菌株,其代号为LCH001,并有可能成为内生拮抗剂。该细菌抑制了几种植物病原真菌的生长,如寄生小隐孢子虫,小球藻甘氨酸,辣椒疫霉,禾谷镰刀菌,灰葡萄孢和番茄红枯菌。生化,生理和16S rDNA序列分析证明它是鲍曼不动杆菌。在体外和体内测试菌株LCH001的发酵液中的滤液后,它显示出对几种植物病原菌(包括辣椒疫霉,禾谷镰刀菌和茄形假单胞菌)的强生长抑制作用,表明对真菌生长的抑制是由于在培养液中存在抗真菌化合物。此外,培养物滤液的抗真菌活性与菌株LCH001的细胞生长显着相关。滤液中的活性代谢物相对热稳定,但对酸性条件敏感。通过吸收到大孔树脂中,乙醇提取,硅胶或LH-20柱色谱法和结晶从培养液中分离出三种抗真菌化合物。通过光谱法将生物活性化合物的结构鉴定为伊图林A的异构体,即伊图林A2,伊图林A3和伊图林A6。异常内生细菌菌株LCH001及其生物活性成分的表征可为植物病害的生物防治提供替代资源。

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