首页> 外文期刊>Iranian journal of public health. >Investigation of Physicho-chemical Properties and Characteriza-tion of Produced Biosurfactant by Selected Indigenous Oil-degrading Bacterium
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Investigation of Physicho-chemical Properties and Characteriza-tion of Produced Biosurfactant by Selected Indigenous Oil-degrading Bacterium

机译:精选的土著石油降解细菌的理化性质和生产的生物表面活性剂的表征研究

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Background: Due to the amphipathic properties of biosurfactants which act on surfaces and interfaces interest by a variety of industries such as cosmetic, pharmaceutical, bioremediation and petroleum-related industries has recently increased. Methods: Detection of a high-efficiency biosurfactant producer using preliminary screening methods from soil contaminated with crude oil was carried at the Microbiology Laboratory at Shahid Beheshti University, Tehran, Iran in 2013. Then after characterization of some physico-chemical properties of produced biosurfactant and production optimization conditions, processes of purification and complete identification were done. Results: Pseudomonas aeruginosa sp. ZN was selected as high-efficiency biosurfactant producing strain from soil contaminated with oil from Ahvaz City, Khuzestan Province, southern Iran. The biosurfactant production in modified BH2 culture medium supplemented with 1% n-hexadecane occurred during exponential phase resulting in a reduction surface tension from 70 to 29 mN/m. Strain ZN produced biosurfactant with different properties to other Pseudomonas reported. These characterizations included continued production at C/N ratio range of 10-40; the produced biosurfactant could not separate stable emulsion of span-80-kerosene: Tween-80-distilled water (30:70) within 24 h. The produced biosurfactants were able to increase hydrophobicity of bacterial cell to 55%. Recovery of biosurfactants from cell-free supernatant was performed with acid precipitation and ammonium sulfate precipitation. Chemical analysis such as spraying techniques on developed TLC plate and staining methods of supernatant indicated that produced biosurfactants were glycolipids, characterized by ESI-MS analysis of extracted product as di-rhamnolipids. Conclusion: Ability of this strain to produce biosurfactant in the presence of cooked oil and n-hexadecane make it an optimistic candidate for biodegradation of some derivatives of crude oil and food industry.
机译:背景:由于生物表面活性剂的两亲性质,其作用于化妆品,制药,生物修复和石油相关行业等各种行业感兴趣的表面和界面。方法:2013年,在伊朗德黑兰的Shahid Beheshti大学的微生物学实验室进行了初步筛选,从被原油污染的土壤中筛选出了高效生物表面活性剂生产商。完成了生产优化条件,纯化过程和完整鉴定。结果:铜绿假单胞菌。 ZN被选为来自伊朗南部胡兹斯坦省阿瓦兹市的被石油污染土壤的高效生物表面活性剂生产菌株。在指数相期间,在添加了1%正十六烷的改良BH2培养基中生产生物表面活性剂,导致表面张力从70 mN / m降低。 ZN菌株生产的生物表面活性剂与其他报道的假单胞菌具有不同的特性。这些特征包括以10/40的C / N比连续生产;生产的生物表面活性剂无法在24小时内分离出跨度80煤油的稳定乳液:吐温80蒸馏水(30:70)。产生的生物表面活性剂能够使细菌细胞的疏水性增加至55%。用酸沉淀和硫酸铵沉淀从无细胞上清液中回收生物表面活性剂。化学分析(例如在已开发的TLC板上喷雾技术和上清液染色方法)表明,产生的生物表面活性剂是糖脂,通过提取物作为二鼠李糖脂的ESI-MS分析来表征。结论:该菌株在煮熟的油和正十六烷的存在下具有生产生物表面活性剂的能力,使其成为原油和食品工业中某些衍生物生物降解的乐观候选者。

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