芽孢杆菌属细菌拮抗剂新菌株代谢产物的研究,以提高其生物制品的有效性

N. Tomashevich, T. M. Sidorova, V. V. Allahverdyan, A. Asaturova
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引用次数: 0

摘要

的目标。利用薄层色谱(TLC)、生物自相色谱(HPLC - MS)和高效液相色谱-质谱(HPLC - MS)技术研究具有开发生物杀菌剂前景的芽孢杆菌属菌株的代谢组学特征。材料与方法。研究的对象是芽孢杆菌属的菌株。从液体培养中分离出外代谢产物,并通过TLC、生物图谱和HPLC - ms分析其代谢组学特征。采用生物自显像法对真菌oxysporum var. orthoceras BZR F6进行了实验培养,鉴定了Bacillus surfactin、iturin和fengycin三种菌株的代谢物。采用高效液相色谱-质谱分析的定量分析结果表明,B. velenzensis BZR 336g和B.解淀粉杆菌BZR 277菌株比其他菌株产生更多的表面素。菌株bzr517和bzr336g中ituric脂肽含量升高。根据产风湿素的能力,布氏贝氏杆菌bzr517和布氏贝氏杆菌bzr336g领先于其他菌株。使用两种分析方法的研究表明,菌株产生所有三种抗真菌脂肽。这很重要,因为代谢物不仅能够抑制植物病原真菌,而且由于协同作用而增强抗真菌作用。获得的结果使我们能够说明使用所有四种菌株作为有效生物杀菌剂的生产者的可能性。
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The study of metabolites of new promising strains of bacterial‐antagonists of the genus Bacillus to increase the effectiveness of fungicidal biological products based on them
Aim. To study the metabolomic profile of bacterial strains of the genus Bacillus promising for the development of biofungicides using thin layer chromatography (TLC), bioautography and high performance liquid chromatography with mass spectrometry (HPLC‐MS).Materials and Methods. The objects of study are strains of bacteria of the genus Bacillus. Exometabolites were isolated from the liquid culture and their metabolomic profile was analyzed by TLC, bioautography, and HPLC‐MS.Results. By the method of bioautography with a test culture of the fungus F. oxysporum var. orthoceras BZR F6 metabolites of bacterial strains of the genus Bacillus surfactin, iturin and fengycin were identified. Quantitative analysis using HPLC‐MS analysis allows us to state that the B. velenzensis BZR 336g and B. amyloliquefaciens BZR 277 strains produce more surfactin than the others. An increased content of ituric lipopeptides was found in strains B. velezensis BZR 517 and B. velenzensis BZR 336g. According to the ability to produce fengycins, strains of B. velezensis BZR 517 and B. velenzensis BZR 336g are ahead of other strains.Conclusion. Studies using two analytical methods reveal that the strains produce all three antifungal lipopeptides. This is important, since metabolites are able not only to suppress phytopathogenic fungi, but also to enhance the antifungal effect due to synergism. The results obtained allow us to state the possibility of using all four strains as producers of effective biofungicides. 
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来源期刊
CiteScore
0.80
自引率
50.00%
发文量
73
审稿时长
8 weeks
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