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首页> 外文期刊>BioMed research international >Isolation and Characterization of Hydrocarbon-Degrading Yeast Strains from Petroleum Contaminated Industrial Wastewater
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Isolation and Characterization of Hydrocarbon-Degrading Yeast Strains from Petroleum Contaminated Industrial Wastewater

机译:石油污染工业废水中可降解烃类酵母菌的分离与表征

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Two yeast strains are enriched and isolated from industrial refinery wastewater. These strains were observed for their ability to utilize several classes of petroleum hydrocarbons substrates, such asn-alkanes and aromatic hydrocarbons as a sole carbon source. Phylogenetic analysis based on the D1/D2 variable domain and the ITS-region sequences indicated that strains HC1 and HC4 were members of the generaCandidaandTrichosporon, respectively. The mechanism of hydrocarbon uptaking by yeast,Candida,andTrichosporonhas been studied by means of the kinetic analysis of hydrocarbons-degrading yeasts growth and substrate assimilation. Biodegradation capacity and biomass quantity were daily measured during twelve days by gravimetric analysis and gas chromatography coupled with mass spectrometry techniques. Removal ofn-alkanes indicated a strong ability of hydrocarbon biodegradation by the isolated yeast strains. These two strains grew on long-chainn-alkane, diesel oil, and crude oil but failed to grow on short-chainn-alkane and aromatic hydrocarbons. Growth measurement attributes of the isolates, usingn-hexadecane, diesel oil, and crude oil as substrates, showed that strain HC1 had better degradation for hydrocarbon substrates than strain HC4. In conclusion, these yeast strains can be useful for the bioremediation process and decreasing petroleum pollution in wastewater contaminated with petroleum hydrocarbons.
机译:从工业炼厂废水中富集并分离出两种酵母菌株。观察到这些菌株利用几种类型的石油烃底物(例如正构烷烃和芳烃)作为唯一碳源的能力。基于D1 / D2可变域和ITS区序列的系统发育分析表明,菌株HC1和HC4分别是Candida和Trichosporon属的成员。通过对降解碳氢化合物的酵母生长和底物同化的动力学分析,研究了酵母,念珠菌和毛孢菌对碳氢化合物的吸收机理。通过重量分析和气相色谱-质谱联用技术,在十二天内每天测量生物降解能力和生物量。正构烷烃的去除表明分离出的酵母菌株具有很强的烃类生物降解能力。这两个菌株在长链烷烃,柴油和原油上生长,但在短链烷烃和芳烃上却不能生长。以十六烷,柴油和原油为底物的分离物的生长测量属性表明,菌株HC1对烃类底物的降解优于菌株HC4。总之,这些酵母菌株可用于生物修复过程和减少石油烃污染的废水中的石油污染。

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