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原油饱和分的生物降解及特征羧酸的生成。

Biodegradation of saturate fraction of crude oil and production of signature carboxylic acids.

机构信息

Université de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM, Pau, France; Department of Biochemistry, Edo State University Uzairue, Edo State, Nigeria.

Université de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM, Pau, France.

出版信息

Chemosphere. 2023 Oct;339:139773. doi: 10.1016/j.chemosphere.2023.139773. Epub 2023 Aug 9.

DOI:10.1016/j.chemosphere.2023.139773
PMID:37567266
Abstract

Bacteria degrading large portion of saturated hydrocarbons are important for crude oil bioremediation. This study investigates Novosphingobium sp. S1, Gordonia amicalis S2 and Gordonia terrae S5 capability of degrading wide range of saturated hydrocarbons from Congo Bilondo crude oil and discusses the degradation pathway. A parallel analytical approach combining GC-MS and LC-HRMS enabled characterization of saturated hydrocarbons and comprehensive determination of carboxylic acid metabolites produced during biodegradation, respectively. Results showed that the three strains could efficiently degrade the n-alkanes (C-C) as well as methyl-substituted alkanes (C-C). The series of mono-, hydroxy- and dicarboxylic acids identified in this study confirmed the active biodegradation of the saturate fraction and suggest their degradation was via the bi-terminal oxidation pathway. This is the first study linking these bacterial species to bi-terminal oxidation of the saturated hydrocarbons. The study highlights the potential application of the bacterial strains in the bioremediation of crude oil contaminated sites. Additionally, while carboxylic acids is indicated as a suitable and valuable metabolic biomarker, its application is considered feasible and cost effective for rapid monitoring and evaluation of hydrocarbon biodegradation.

摘要

降解大量饱和烃的细菌对于原油的生物修复至关重要。本研究调查了 Novosphingobium sp. S1、Gordonia amicalis S2 和 Gordonia terrae S5 降解刚果比隆戈原油中广泛范围的饱和烃的能力,并讨论了降解途径。一种结合 GC-MS 和 LC-HRMS 的平行分析方法,分别能够对饱和烃进行特征化和对生物降解过程中产生的羧酸代谢物进行综合测定。结果表明,这三种菌株能够有效地降解正构烷烃(C-C)和甲基取代烷烃(C-C)。本研究中鉴定的一系列单羧酸、羟基羧酸和二羧酸证实了饱和馏分的有效生物降解,并表明其降解是通过双末端氧化途径进行的。这是首次将这些细菌物种与饱和烃的双末端氧化联系起来的研究。该研究强调了这些细菌菌株在受原油污染场地的生物修复中的潜在应用。此外,虽然羧酸被认为是一种合适且有价值的代谢生物标志物,但它的应用被认为是可行且具有成本效益的,可用于快速监测和评估烃类的生物降解。

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