Bacterial denitrification is a respiratory process that is a major source and sink of the potent greenhouse gas nitrous oxide. Many denitrifying bacteria can adjust to life in both oxic and anoxic environments through differential expression of their respiromes in response to environmental signals such as oxygen, nitrate and nitric oxide. We used steady state oxic and anoxic chemostat cultures to demonstrate that the switch from aerobic to anaerobic metabolism is brought about by changes in the levels of expression of relatively few genes, but this is sufficient to adjust the configuration of the respirome to allow the organism to efficiently respire nitrate without the significant release of intermediates, such as nitrous oxide. The regula...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
<div><p>In response to impending anoxic conditions, denitrifying bacteria sustain respiratory metabo...
Through a process called denitrification, bacteria can respire with the use of as terminal electron ...
Bacterial respiration generates the energy required for bacterial growth. Respiration is not only li...
In oxygen-limited environments, denitrifying bacteria can switch from oxygen-dependent respiration t...
When oxygen becomes limiting, denitrifying bacteria must prepare for anaerobic respiration by synthe...
Supporting information to Kellermann et al, submitted to mBio June 2022; five separate files named s...
Environmental bacteria are in general limited by nutrient availability, and as the conditions fluctu...
N2O is an important greenhouse gas and a major cause of ozone depletion. Denitrifying bacteria play ...
AbstractThe nir and nor genes, which encode nitrite and nitric oxide reductase, lie close together o...
Global atmospheric loading of the climate active gas nitrous oxide (N2O) continues to increase. A si...
Denitrification is a respiratory process that produces nitrous oxide as an intermediate, which may e...
Paracoccus denitrificans, a model Alphaproteobacteria soil denitrifier, can grow solely on nitrate o...
ABSTRACT Global atmospheric loading of the climate-active gas nitrous oxide (N2O) continues to incre...
Paracoccus denitrificans, a model Alphaproteobacteria soil denitrifier, can grow solely on nitrate o...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
<div><p>In response to impending anoxic conditions, denitrifying bacteria sustain respiratory metabo...
Through a process called denitrification, bacteria can respire with the use of as terminal electron ...
Bacterial respiration generates the energy required for bacterial growth. Respiration is not only li...
In oxygen-limited environments, denitrifying bacteria can switch from oxygen-dependent respiration t...
When oxygen becomes limiting, denitrifying bacteria must prepare for anaerobic respiration by synthe...
Supporting information to Kellermann et al, submitted to mBio June 2022; five separate files named s...
Environmental bacteria are in general limited by nutrient availability, and as the conditions fluctu...
N2O is an important greenhouse gas and a major cause of ozone depletion. Denitrifying bacteria play ...
AbstractThe nir and nor genes, which encode nitrite and nitric oxide reductase, lie close together o...
Global atmospheric loading of the climate active gas nitrous oxide (N2O) continues to increase. A si...
Denitrification is a respiratory process that produces nitrous oxide as an intermediate, which may e...
Paracoccus denitrificans, a model Alphaproteobacteria soil denitrifier, can grow solely on nitrate o...
ABSTRACT Global atmospheric loading of the climate-active gas nitrous oxide (N2O) continues to incre...
Paracoccus denitrificans, a model Alphaproteobacteria soil denitrifier, can grow solely on nitrate o...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
<div><p>In response to impending anoxic conditions, denitrifying bacteria sustain respiratory metabo...
Through a process called denitrification, bacteria can respire with the use of as terminal electron ...