海洋芽孢杆菌(Bacillus marinus)B-9987菌株抑制病原真菌机理的研究
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国家“863计划”(2007AA09Z435,2007AA091507,2008AA09Z407);国家自然科学基金(40776098,20602009)


Antifungal mechanism of Bacillus marinus B-9987
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Supported by Chinese National Programs for High Technology Research and Development(2007AA09Z435, 2007AA091507, 2008AA09Z407); National Natural Science Foundation(40776098, 20602009)

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    摘要:

    摘要:【目的】:探讨海洋芽孢杆菌(Bacillus marinus)B-9987菌株的代谢产物BMME-1,对植物病原真菌茄链格孢菌的抑菌作用机理。【方法】分别使用分光光法、气相色谱-质谱GC-MS联用技术、红外光谱法等,检测了BMME-1处理病原真菌后,菌体渗透性、细胞壁及细胞膜成份的变化。【结果】BMME-1对茄链格孢菌的抑菌中浓度(MIC50)为6.2 mg/L,最小杀菌浓度(MFC)为50 mg/L,在MIC50浓度或高于此浓度处理靶标菌,将导致菌体蛋白质、核酸等大分子物质的外流;处理菌株葡聚糖结

    Abstract:

    Abstract: [Objective] We had a study on the antifungal effect of the metabolite BMME-1 from Bacillus marinus B-9987, in order to reveal the antifungal mechanism of it. [Methods] The permeability of the Alternaria solani was test by spectrophotometer after the treatment with crude extracts of B-9987. The composition of cell wall and the sterol components of the fungal plasmalemma of Alternaria solani was analyzed with Infrared Spectrum and GC-MS, respectively. [Results] We found that the metabolites of B-9987 had strong antifungal activity with MIC50 and MFC value being 6.2mg/L and 50mg/L. The absorbance in extracellular fluid detection showed that the tegument of the fungi was impaired. The detection of glucan and chitin indicated the change in the structure of the cell wall. The absorption peak of the carbon-hydrogen bond, β-glucosidic bond, carbon-oxygen bond was attenuated but the hydroxyl, carbonyl absorption was enhanced on the contrary. There were only one peak change in chitin chromatogram on the absorption of amide linkage comparing to the control. These changes on the structure may affect the stability of the fungal cell wall. Ergosterol was the predominant component of sterol with the proportion of 62.52±3.31% in control cells, but showed a decline during treatment with BMME-1 at a concentration of 56.36±2.52%. Accumulation of coprostanol, the precursor of ergosterol ,was found in the test. [Conclusion] From the result we can conclude that the antifungal mechanism of the crude extracts was interfering of ergosterol synthesis resulting in the change on permeability, and also mainly changed the structure of the cell wall, mainly acting on the glucan synthesis.

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高伟,田黎,周俊英,史振平,郑立,崔志松,李元广. 海洋芽孢杆菌(Bacillus marinus)B-9987菌株抑制病原真菌机理的研究. 微生物学报, 2009, 49(11): 1494-1501

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  • 收稿日期:2009-06-30
  • 最后修改日期:2009-08-13
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