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Characterization of Biosurfactant Production and Cell Surface Properties of Five Effective Yeast Strains in PAHs Biodegradation

机译:PAHS生物降解中五种有效酵母菌菌株的生物活性剂生产和细胞表面性能的表征

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The objectives of this work were comparison of biosurfactant production and cell surface properties' changes of five effective yeast isolates when PAH was used as carbon source,as well as the assessment of PAHs degradation efficiency of these yeast strains.A two-phase culture system was used to analyze phenanthrene solubility and its absorbance to biomass in these yeast cultures.The results showed that these isolates were better emulsifier producers than surface tension reducers when naphthalene was used as carbon source.During growth on PAHs,an important increase in cell surface hydrophobicity and emulsification activity was observed.The results of the two-phase system suggested that the yeast strains with stronger emulsification ability possessed the ability to increase the aqueous solubility of PAHs,and the strains with higher cell hydrophobicity adsorbed much more phenanthrene on cell surface.This result suggested that both emulsifier production and cell surface hydrophobicity could promote hydrocarbon uptake.The higher degree of PAHs biodegradation was corresponded to the high emulsification activity of yeast strains.Based on the results,it is supposed that emulsification activity might play an important role in PAHs degradation by these yeast strains.
机译:这项工作的目的是在使用PAH作为碳源时,生物活性剂生产和细胞表面性能的比较五种有效酵母菌的变化,以及这些酵母菌株的PAHS降解效率的评估。两相培养系统是用于分析这些酵母培养物中的菲溶解度及其对生物质的吸光度。结果表明,当萘用作碳源时,这些分离物是比表面张力减速器更好的乳化剂生产商。在PAHS上生长,细胞表面疏水性的重要增加观察到乳化活性。两阶段系统的结果表明,乳化能力较强的酵母菌株具有增加PAHS水溶性的能力,以及具有更高细胞疏水性的菌株吸附更多的细胞表面上的菲苯乙烯。建议乳化剂生产和细胞表面疏水性Coul D促进碳氢化合物吸收。较高程度的PAHS生物降解与酵母菌菌株的高乳化活性相对应。基于结果,假设乳化活性可能在这些酵母菌株的PAHS降解中发挥重要作用。

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