Insights into the Anaerobic Biodegradation Pathway of n-Alkanes in Oil Reservoirs by Detection of Signature Metabolites
Выявление метаболитов-маркеров как способ изучения пути анаэробной биодеградации n-алканов в нефтяных пластах
2015-05-13
SCID: 54.1/4qycjnhx
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GC-MS metabolite profilingalkylsuccinate synthasealkylsuccinatesanaerobic alkane biodegradationfumarate addition
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Abstract (AI)
Anaerobic degradation of alkanes in hydrocarbon-rich environments has been documented and different degradation strategies proposed, of which the most encountered one is fumarate addition mechanism, generating alkylsuccinates as specific biomarkers. However, little is known about the mechanisms of anaerobic degradation of alkanes in oil reservoirs, due to low concentrations of signature metabolites and lack of mass spectral characteristics to allow identification. In this work, we used a multidisciplinary approach combining metabolite profiling and selective gene assays to establish the biodegradation mechanism of alkanes in oil reservoirs. A total of twelve production fluids from three different oil reservoirs were collected and treated with alkali; organic acids were extracted, derivatized with ethanol to form ethyl esters and determined using GC-MS analysis. Collectively, signature metabolite alkylsuccinates of parent compounds from C1 to C8 together with their (putative) downstream metabolites were detected from these samples. Additionally, metabolites indicative of the anaerobic degradation of mono- and poly-aromatic hydrocarbons (2-benzylsuccinate, naphthoate, 5,6,7,8-tetrahydro-naphthoate) were also observed. The detection of alkylsuccinates and genes encoding for alkylsuccinate synthase shows that anaerobic degradation of alkanes via fumarate addition occurs in oil reservoirs. This work provides strong evidence on the in situ anaerobic biodegradation mechanisms of hydrocarbons by fumarate addition.
Key Findings
1
A multidisciplinary metabolite-profiling and selective-gene-assay approach identified anaerobic hydrocarbon degradation mechanisms in oil reservoirs.
2
Alkylsuccinates derived from parent alkanes C1–C8 and putative downstream metabolites were detected in production fluids from three oil reservoirs.
3
Co-detection of alkylsuccinates and alkylsuccinate-synthase genes demonstrates that fumarate addition mediates anaerobic alkane degradation in oil reservoirs.
4
Metabolites indicating anaerobic degradation of mono- and poly-aromatic hydrocarbons, including 2-benzylsuccinate and naphthoate derivatives, were observed.
5
The study provides strong in situ evidence for fumarate-addition biodegradation of hydrocarbons despite previously low concentrations and limited mass-spectral identification data.
Research Object
n-alkanes and aromatic hydrocarbons in oil reservoirs
Research Subject
their in situ anaerobic biodegradation mechanisms via fumarate addition, including alkylsuccinate formation and downstream metabolite production
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2015-05-13
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