首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Isolation, identification, and characterization of diesel-oil-degrading bacterial strains indigenous to Changqing oil field, China
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Isolation, identification, and characterization of diesel-oil-degrading bacterial strains indigenous to Changqing oil field, China

机译:柴油降解细菌菌株的分离,鉴定和表征,天然气常青油田

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摘要

In the present study, 12 indigenous diesel-oil-degrading bacteria were isolated from the petroleum-contaminated soils of the Changqing oil field (Xi'an, China). Measurement of the diesel-oil degradation rates of these strains by the gravimetric method revealed that they ranged from 42% to 66% within 2 weeks. The highest degradation rates were observed from strains CQ8-1 (66%), CQ8-2 (62.6%), and CQ11 (59%), which were identified as Bacillus thuringiensis, Ochrobactrum anthropi, and Bordetella bronchialis, respectively, based on their 16S rDNA sequences. Moreover, the physiological and biochemical properties of these three strains were analyzed by Gram staining, catalase, oxidase, and Voges-Proskauer tests. Transmission electron microscopy showed that all three strains were rod shaped with flagella. Gas chromatography and mass spectrometric analyses indicated that medium- and long-chain n-alkanes in diesel oil (C11-C29) were degraded to different degrees by B. thuringiensis, O. anthropi, and B. bronchialis, and the degradation rates gradually decreased as the carbon numbers increased. Overall, the results of this study indicate strains CQ8-1, CQ8-2, and CQ11 might be useful for environmentally friendly and cost-effective bioremediation of oil-contaminated soils.
机译:在本研究中,从长庆油田(中国西安)的石油污染的土壤中分离了12种土着柴油降解细菌。通过重量法测量这些菌株的柴油 - 油降解速率显示,它们在2周内从42%到66%的范围。从菌株CQ8-1(66%),CQ8-2(62.6%)和CQ11(59%)中观察到最高的降解速率,其分别根据其鉴定为Bacillus thuringiensis,Ochrobactrum Anthropi和Bordetella支气管尼斯16S RDNA序列。此外,通过革兰染料,过氧化氢酶,氧化酶和雾化试验试验分析这三种菌株的生理和生化特性。透射电子显微镜表明,所有三种菌株都是带鞭毛的棒状。气相色谱和质谱分析表明,柴油(C11-C29)中的中链N-烷烃通过B的B. thuringiensis,O.Nethropi和B.支气管率降低到不同程度的患者,并且降解率逐渐减少随着碳数增加。总体而言,该研究的结果表明菌株CQ8-1,CQ8-2,CQ11可能对油污污染土壤的环保和经济高效的生物修复有用。

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