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Phylogenetic diversity of bacterial communities associated with bioremediation of crude oil in microcosms

机译:与微观中原油生物修复相关的细菌群落的系统发育多样性

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摘要

Bioremediation, mainly by indigenous bacteria, has been regarded as an effective way to clean up oil pollution after an oil spill. In order to obtain a systematic understanding of the succession of bacterial communities associated with oil bioremediation, sediments collected from the Penglai 19-3 oil platform were co-incubated with crude oil. Oil biodegradation was assessed on the basis of changes in oil composition monitored by GC-MS. Changes in the bacterial community structure were detected by two 16S rRNA gene based culture-independent methods, denaturing gradient gel electrophoresis (DGGE) and clone library. The results suggested that crude oil was rapidly degraded during the 30-day bioremediation period. Bacteria affiliated with the genus Pseudomonas dominated all three clone libraries. But dramatic changes were also detected in the process of biodegradation of crude oil. The "professional hydrocarbonocastic bacteria" (e.g., Alcanivorax) became abundant in the two samples during the bioremediation period. Meanwhile, delta-proteobacteria was only detected in the two samples. Information on the bacterial community revealed in this study will be useful in developing strategies for bioremediation of crude oil dispersed in the marine ecosystem. (C) 2013 Elsevier Ltd. All rights reserved.
机译:主要由本地细菌进行的生物修复被认为是溢油后清除油污的有效方法。为了对与石油生物修复相关的细菌群落的演替有系统的了解,将从蓬莱19-3石油平台收集的沉积物与原油共同孵育。根据GC-MS监测的油成分变化评估油的生物降解能力。通过两种基于细菌的16S rRNA基因独立培养方法,变性梯度凝胶电泳(DGGE)和克隆文库检测细菌群落结构的变化。结果表明,原油在30天的生物修复期内迅速降解。与假单胞菌属相关的细菌主导了所有三个克隆文库。但是,在原油的生物降解过程中也发现了巨大的变化。在生物修复期间,两个样品中的“专业烃类细菌”(例如Alcanivorax)变得丰富。同时,仅在两个样品中检测到δ-蛋白细菌。这项研究中揭示的有关细菌群落的信息将有助于制定对海洋生态系统中分散的原油进行生物修复的策略。 (C)2013 Elsevier Ltd.保留所有权利。

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