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首页> 外文期刊>International Biodeterioration & Biodegradation >Oil-degrading bacteria from a membrane bioreactor (BF-MBR) system for treatment of saline oily waste: Isolation, identification and characterization of the biotechnological potential
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Oil-degrading bacteria from a membrane bioreactor (BF-MBR) system for treatment of saline oily waste: Isolation, identification and characterization of the biotechnological potential

机译:膜生物反应器(BF-MBR)系统中用于降解含盐废水的油脂降解细菌:生物技术潜力的分离,鉴定和表征

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A collection of forty-two (42) strains was obtained during microbiological screening of a Membrane Bioreactor (MBR) system developed for the treatment of saline oily waste originated from marine transportation. The diversity of the bacterial collection was analyzed by amplification and sequencing of the 16S rRNA gene. Taxonomic analysis showed high level of identity with recognized sequences of seven (7) distinct bacterial genera (Alcanivorax, Erythrobacter, Marinobacter, Microbacterium, Muricauda, Rhodococcus and Rheinheimera). The biotechnological potential of the isolates was screened considering an important factor such as the biosurfactant production. In particular fourteen (14) biosurfactant producing bacteria were selected and further tested, for growth on crude oil and hydrocarbon degradation. Data obtained from this study confirmed the high activity of bacteria related to genera Alcanivorax (isolates MBR-B11 and MBR-G10), Rheinheimera (isolates MBR-H02 and MBR-H05), Rhodococcus (isolates MBR-F04 and MBR-G05) and Muricauda (isolate MBR-G04) and underline the possible application of these bacteria in remediation of saline oily waste water. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在微生物筛选膜生物反应器(MBR)系统的微生物学筛选过程中,收集了四十二(42)个菌株,该系统开发用于处理源自海洋运输的含盐含油废物。通过扩增和测序16S rRNA基因分析了细菌收集的多样性。分类学分析显示与七(7)个不同细菌属(Alcanivorax,Erothrobacter,Marinobacter,Microbacterium,Muricauda,Rhodococcus和Rheinheimera)的公认序列具有高度同一性。考虑到诸如生物表面活性剂生产的重要因素,筛选了分离物的生物技术潜力。特别地,选择了十四(14)种产生生物表面活性剂的细菌,并进行了测试,以用于原油生长和烃降解。从这项研究中获得的数据证实了与Alcanivorax属(分离出MBR-B11和MBR-G10),Rheinheimera(分离出MBR-H02和MBR-H05),红球菌(分离出MBR-F04和MBR-G05)和Muricauda(分离物MBR-G04)并强调了这些细菌在修复含盐废水中的可能应用。 (C)2016 Elsevier Ltd.保留所有权利。

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