Anaerobic syntrophic associations of fermentative bacteria and methanogenic archaea operate at the thermodynamic limits of life. The interspecies transfer of electrons from formate or hydrogen as a substrate for the methanogens is key. Contrary requirements of syntrophs and methanogens for growth-sustaining product and substrate concentrations keep the formate and hydrogen concentrations low and within a narrow range. Since formate is a direct substrate for methanogens, a niche for microorganisms that grow by the conversion of formate to hydrogen plus bicarbonate--or vice versa--may seem unlikely. Here we report experimental evidence for growth on formate by syntrophic communities of (i) Moorella sp. strain AMP in coculture with a thermophi...
Methanogenesis allows methanogenic archaea (methanogens) to generate cellular energy for their growt...
In sulfate-reducing and methanogenic environments complex biopolymers are hydrolyzed and degraded by...
In sulfate-reducing and methanogenic environments complex biopolymers are hydrolyzed and degraded by...
Anaerobic syntrophic associations of fermentative bacteria and methanogenic archaea operate at the t...
Hydrogen and formate are important electron carriers in methanogenic degradation in anoxic environme...
Interspecies electron transfer is a key process in methanogenic and sulphate-reducing environments. ...
Interspecies electron transfer is a key process in methanogenic and sulphate-reducing environments. ...
The hydrogenase and formate dehydrogenase levels in Syntrophobacter fumaroxidans and Methanospirillu...
The hydrogenase and formate dehydrogenase levels in Syntrophobacter fumaroxidans and Methanospirillu...
Many places on earth are without oxygen (anaerobic) such as rice paddy fields, swamps and sediments...
Microbial syntrophy is a thermodynamically-based cooperation between microbial partners that share t...
Many places on earth are without oxygen (anaerobic) such as rice paddy fields, swamps and sediments...
Propionate is a key intermediate in the conversion of complex organic matter under methanogenic cond...
Propionate is a key intermediate in the conversion of complex organic matter under methanogenic cond...
Propionate is a key intermediate in the conversion of complex organic matter under methanogenic cond...
Methanogenesis allows methanogenic archaea (methanogens) to generate cellular energy for their growt...
In sulfate-reducing and methanogenic environments complex biopolymers are hydrolyzed and degraded by...
In sulfate-reducing and methanogenic environments complex biopolymers are hydrolyzed and degraded by...
Anaerobic syntrophic associations of fermentative bacteria and methanogenic archaea operate at the t...
Hydrogen and formate are important electron carriers in methanogenic degradation in anoxic environme...
Interspecies electron transfer is a key process in methanogenic and sulphate-reducing environments. ...
Interspecies electron transfer is a key process in methanogenic and sulphate-reducing environments. ...
The hydrogenase and formate dehydrogenase levels in Syntrophobacter fumaroxidans and Methanospirillu...
The hydrogenase and formate dehydrogenase levels in Syntrophobacter fumaroxidans and Methanospirillu...
Many places on earth are without oxygen (anaerobic) such as rice paddy fields, swamps and sediments...
Microbial syntrophy is a thermodynamically-based cooperation between microbial partners that share t...
Many places on earth are without oxygen (anaerobic) such as rice paddy fields, swamps and sediments...
Propionate is a key intermediate in the conversion of complex organic matter under methanogenic cond...
Propionate is a key intermediate in the conversion of complex organic matter under methanogenic cond...
Propionate is a key intermediate in the conversion of complex organic matter under methanogenic cond...
Methanogenesis allows methanogenic archaea (methanogens) to generate cellular energy for their growt...
In sulfate-reducing and methanogenic environments complex biopolymers are hydrolyzed and degraded by...
In sulfate-reducing and methanogenic environments complex biopolymers are hydrolyzed and degraded by...