A novel type of denitrifying bacterium (strain HxN1) with the capacity to oxidize n-alkanes anaerobically with nitrate as the electron acceptor to CO2 formed (1-methylpentyl)succinate (MPS) during growth on n-hexane as the only organic substrate under strict exclusion of air. Identification of MPS by gas chromatography-mass spectrometry was based on comparison with a synthetic standard. MPS was not formed during anaerobic growth on n-hexanoate. Anaerobic growth with [1-13C]n-hexane ord 14-n-hexane led to a 1-methylpentyl side chain in MPS with one 13C atom or 13 deuterium atoms, respectively. This indicates that the 1-methylpentyl side chain originates directly from n-hexane. Electron paramagnetic resonance spectroscopy revealed the presenc...
International audienceThe alkane-degrading, sulfate-reducing bacterium Desulfatibacillum aliphaticiv...
Saturated hydrocarbons are quantitatively the most abundant fraction among all petroleum hydrocarbon...
Strain HxN1, a member of the Betaproteobacteria, can grow anaerobically by denitrification with n‐al...
The anaerobic degradation pathway of the saturated hydrocarbon n-hexane in a denitrifying strain (Hx...
The anaerobic degradation pathway of the saturated hydrocarbon n-hexane in a denitrifying strain (Hx...
The formation of metabolites during anaerobic biodegradation of saturated hydrocarbons directly from...
Microorganisms can degrade saturated hydrocarbons (alkanes) not only under oxic but also under anoxi...
The formation of metabolites during anaerobic biodegradation of saturated hydrocarbons directly from...
Microorganisms can degrade saturated hydrocarbons (alkanes) not only under oxic but also under anoxi...
Anaerobic metabolism of hydrocarbons proceeds either via addition to fumarate or by hydroxylation in...
Diverse microorganisms have been described to degrade petroleum hydrocarbons anaerobically. Strains ...
Strain HxN1, an Azoarcus-like denitrifying bacterium, degrades the saturated hydrocarbon n-hexane un...
PhD ThesisHydrocarbons are the second most prolific compound class found naturally and are used by ...
The capacity of denitrifying bacteria for anaerobic utilization of saturated hydrocarbons (alkanes) ...
Strain HxN1, an Azoarcus-like denitrifying bacterium, degrades the saturated hydrocarbon n-hexane un...
International audienceThe alkane-degrading, sulfate-reducing bacterium Desulfatibacillum aliphaticiv...
Saturated hydrocarbons are quantitatively the most abundant fraction among all petroleum hydrocarbon...
Strain HxN1, a member of the Betaproteobacteria, can grow anaerobically by denitrification with n‐al...
The anaerobic degradation pathway of the saturated hydrocarbon n-hexane in a denitrifying strain (Hx...
The anaerobic degradation pathway of the saturated hydrocarbon n-hexane in a denitrifying strain (Hx...
The formation of metabolites during anaerobic biodegradation of saturated hydrocarbons directly from...
Microorganisms can degrade saturated hydrocarbons (alkanes) not only under oxic but also under anoxi...
The formation of metabolites during anaerobic biodegradation of saturated hydrocarbons directly from...
Microorganisms can degrade saturated hydrocarbons (alkanes) not only under oxic but also under anoxi...
Anaerobic metabolism of hydrocarbons proceeds either via addition to fumarate or by hydroxylation in...
Diverse microorganisms have been described to degrade petroleum hydrocarbons anaerobically. Strains ...
Strain HxN1, an Azoarcus-like denitrifying bacterium, degrades the saturated hydrocarbon n-hexane un...
PhD ThesisHydrocarbons are the second most prolific compound class found naturally and are used by ...
The capacity of denitrifying bacteria for anaerobic utilization of saturated hydrocarbons (alkanes) ...
Strain HxN1, an Azoarcus-like denitrifying bacterium, degrades the saturated hydrocarbon n-hexane un...
International audienceThe alkane-degrading, sulfate-reducing bacterium Desulfatibacillum aliphaticiv...
Saturated hydrocarbons are quantitatively the most abundant fraction among all petroleum hydrocarbon...
Strain HxN1, a member of the Betaproteobacteria, can grow anaerobically by denitrification with n‐al...