Environmental bacteria are in general limited by nutrient availability, and as the conditions fluctuate rapidly and unpredictably they must adapt or they will not thrive. This requires fast and adequate sensing and responding mechanisms, assuring fitness with minimum investment, as there is not much energy to be wasted. The common notion about the regulatory biology of denitrification is based on detailed studies of only a few model organisms. Although the gene regulatory networks of these organisms share some common traits, there is a substantial variation in the way organisms tackle transition from aerobic respiration to denitrification, and in the levels they accumulate intermediates. This knowledge, however, only arose from st...
Denitrification is one of the main processes in the nitrogen cycle, and it is the reduction of nitra...
Bacterial denitrification is a respiratory process that is a major source and sink of the potent gre...
ABSTRACT Global atmospheric loading of the climate-active gas nitrous oxide (N2O) continues to incre...
Environmental bacteria are in general limited by nutrient availability, and as the conditions fluctu...
Dinitrogenoksid (N2O) er den tredje viktigaste klimagassen etter CO2 og metan, og er ein viktig bidr...
In oxygen-limited environments, denitrifying bacteria can switch from oxygen-dependent respiration t...
N2O is known to be one of the most potent greenhouse gases due to its long residence time in the atm...
Through a process called denitrification, bacteria can respire with the use of as terminal electron ...
N2O is an important greenhouse gas and a major cause of ozone depletion. Denitrifying bacteria play ...
When oxygen becomes limiting, denitrifying bacteria must prepare for anaerobic respiration by synthe...
Denitrification is a biogeochemical process of major importance for nitrogen loss from ecosystems. ...
Denitrification is a taxonomically widespread process used by more than 60 different genera of bacte...
Denitrification is an anaerobic microbial respiratory process, which takes part in the global biogeo...
With its rapidly rising concentration in the atmosphere and its high global warming potential, N2O i...
EABIOmECT3Arable soils are a major source of nitrous oxide (N2O). The only known sink in Earth’s bio...
Denitrification is one of the main processes in the nitrogen cycle, and it is the reduction of nitra...
Bacterial denitrification is a respiratory process that is a major source and sink of the potent gre...
ABSTRACT Global atmospheric loading of the climate-active gas nitrous oxide (N2O) continues to incre...
Environmental bacteria are in general limited by nutrient availability, and as the conditions fluctu...
Dinitrogenoksid (N2O) er den tredje viktigaste klimagassen etter CO2 og metan, og er ein viktig bidr...
In oxygen-limited environments, denitrifying bacteria can switch from oxygen-dependent respiration t...
N2O is known to be one of the most potent greenhouse gases due to its long residence time in the atm...
Through a process called denitrification, bacteria can respire with the use of as terminal electron ...
N2O is an important greenhouse gas and a major cause of ozone depletion. Denitrifying bacteria play ...
When oxygen becomes limiting, denitrifying bacteria must prepare for anaerobic respiration by synthe...
Denitrification is a biogeochemical process of major importance for nitrogen loss from ecosystems. ...
Denitrification is a taxonomically widespread process used by more than 60 different genera of bacte...
Denitrification is an anaerobic microbial respiratory process, which takes part in the global biogeo...
With its rapidly rising concentration in the atmosphere and its high global warming potential, N2O i...
EABIOmECT3Arable soils are a major source of nitrous oxide (N2O). The only known sink in Earth’s bio...
Denitrification is one of the main processes in the nitrogen cycle, and it is the reduction of nitra...
Bacterial denitrification is a respiratory process that is a major source and sink of the potent gre...
ABSTRACT Global atmospheric loading of the climate-active gas nitrous oxide (N2O) continues to incre...