Oxygen has a great impact on the metabolism and physiology of microorganisms. It serves as the most efficient terminal electron acceptor to drive the energy conservation process of cellular respiration and is required in many biosynthetic reactions. Bacteria encounter oxygen fluctuation and limitation during their growth in both natural ecological niches and in laboratory vessels. In response to oxygen limitation, facultative bacteria undergo substantial metabolic reprogramming to switch from the aerobic respiration to either anaerobic respiration, fermentation, or photosynthesis. Two key factors determine the metabolic pathways bacteria adopt under oxygen deprived microaerobic and anaerobic conditions: maximal energy conservation and redox...
Background: Many bacteria undergo transitions between environments with differing O2 availabilities ...
Escherichia coli is a facultatively anaerobic bacterium. With glucose if no external electron accept...
Lange J, Muench E, Mueller J, et al. Deciphering the Adaptation of Corynebacterium glutamicum in Tra...
Abstract Background Microbial production of biofuels and biochemicals from renewable feedstocks has ...
Zero-growth processes are a promising strategy for the production of reduced molecules and depict a ...
The purple nonsulfur bacterium Rhodospirillum rubrum has been employed to study physiological adapta...
The purple nonsulfur bacterium Rhodospirillum rubrum has been employed to study physiological adapta...
Zero-growth processes are a promising strategy for the production of reduced molecules and depict a ...
Bioprocesses conducted under conditions with restricted O2 supply are increasingly exploited for the...
The purple nonsulfur bacterium Rhodospirillum rubrum has been employed to study physiological adapta...
ABSTRACT: Geobacillus thermoglucosidasius is a Gram-positive, thermophilic bacterium capable of etha...
AbstractThe facultatively anaerobic Escherichia coli is able to grow by aerobic and by anaerobic res...
AbstractBioprocesses conducted under conditions with restricted O2 supply are increasingly exploited...
The microbial production of commodity chemicals is a promising avenue for the development of sustain...
Background: Many bacteria undergo transitions between environments with differing O2 availabilities ...
Background: Many bacteria undergo transitions between environments with differing O2 availabilities ...
Escherichia coli is a facultatively anaerobic bacterium. With glucose if no external electron accept...
Lange J, Muench E, Mueller J, et al. Deciphering the Adaptation of Corynebacterium glutamicum in Tra...
Abstract Background Microbial production of biofuels and biochemicals from renewable feedstocks has ...
Zero-growth processes are a promising strategy for the production of reduced molecules and depict a ...
The purple nonsulfur bacterium Rhodospirillum rubrum has been employed to study physiological adapta...
The purple nonsulfur bacterium Rhodospirillum rubrum has been employed to study physiological adapta...
Zero-growth processes are a promising strategy for the production of reduced molecules and depict a ...
Bioprocesses conducted under conditions with restricted O2 supply are increasingly exploited for the...
The purple nonsulfur bacterium Rhodospirillum rubrum has been employed to study physiological adapta...
ABSTRACT: Geobacillus thermoglucosidasius is a Gram-positive, thermophilic bacterium capable of etha...
AbstractThe facultatively anaerobic Escherichia coli is able to grow by aerobic and by anaerobic res...
AbstractBioprocesses conducted under conditions with restricted O2 supply are increasingly exploited...
The microbial production of commodity chemicals is a promising avenue for the development of sustain...
Background: Many bacteria undergo transitions between environments with differing O2 availabilities ...
Background: Many bacteria undergo transitions between environments with differing O2 availabilities ...
Escherichia coli is a facultatively anaerobic bacterium. With glucose if no external electron accept...
Lange J, Muench E, Mueller J, et al. Deciphering the Adaptation of Corynebacterium glutamicum in Tra...