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Biodegradation of an Alicyclic Hydrocarbon by a Sulfate-Reducing Enrichment from a Gas Condensate-Contaminated Aquifer

机译:气体浓缩物污染的含水层中硫酸盐的还原富集对脂环烃的生物降解作用

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摘要

We used ethylcyclopentane (ECP) as a model alicyclic hydrocarbon and investigated its metabolism by a sulfate-reducing bacterial enrichment obtained from a gas condensate-contaminated aquifer. The enrichment coupled the consumption of ECP with the stoichiometrically expected amount of sulfate reduced. During ECP biodegradation, we observed the transient accumulation of metabolite peaks by gas chromatography-mass spectrometry, three of which had identical mass spectrometry profiles. Mass-spectral similarities to analogous authentic standards allowed us to identify these metabolites as ethylcyclopentylsuccinic acids, ethylcyclopentylpropionic acid, ethylcyclopentylcarboxylic acid, and ethylsuccinic acid. Based on these findings, we propose a pathway for the degradation of this alicyclic hydrocarbon. Furthermore, a putative metabolite similar to ethylcyclopentylsuccinic acid was also found in samples of contaminated groundwater from the aquifer. However, no such finding was evident for samples collected from wells located upgradient of the gas condensate spill. Microbial community analysis of the ECP-degrading enrichment by denaturing gradient gel electrophoresis revealed the presence of at least three different organisms using universal eubacterial primers targeting 550 bp of the 16S rRNA gene. Based on sequence analysis, these organisms are phylogenetically related to the genera Syntrophobacter and Desulfotomaculum as well as a member of the Cytophaga-Flexibacter-Bacteroides group. The evidence suggests that alicyclic hydrocarbons such as ECP can be anaerobically activated by the addition to the double bond of fumarate to form alkylsuccinate derivatives under sulfate-reducing conditions and that the reaction occurs in the laboratory and in hydrocarbon-impacted environments.
机译:我们将乙基环戊烷(ECP)用作模型脂环族烃,并通过从受气体冷凝物污染的含水层中获得的硫酸盐还原细菌富集研究了其代谢。浓缩使ECP的消耗与化学计量的硫酸盐减少量相结合。在ECP生物降解过程中,我们通过气相色谱-质谱法观察到代谢物峰的瞬时积累,其中三个具有相同的质谱图。质谱与类似真实标准品的相似性使我们能够将这些代谢物鉴定为乙基环戊基琥珀酸,乙基环戊基丙酸,乙基环戊基羧酸和乙基琥珀酸。基于这些发现,我们提出了该脂环族烃降解的途径。此外,在含水层受污染的地下水样品中还发现了与乙基环戊基琥珀酸相似的推定代谢产物。但是,对于从凝析气溢流向上的井中采集的样品,没有发现这样的发现。通过变性梯度凝胶电泳对ECP降解富集的微生物群落分析显示,使用针对16S rRNA基因550 bp的通用真细菌引物,存在至少三种不同的生物。根据序列分析,这些生物与系统风化细菌和去皮鞭毛虫属有亲缘关系,并且是细胞噬菌体-弯曲杆菌-拟杆菌属的成员。有证据表明,在富硫酸盐还原条件下,通过向富马酸酯的双键上加成脂环烃,可以在厌氧条件下将其富氧活化,从而形成琥珀酸烷基酯衍生物,并且该反应发生在实验室和受烃影响的环境中。

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