OAK-B135 This project focuses on the characterization of the regulation of the genes involved in nitrification in the bacterium Nitrosomonas europaea. The key genes in the nitrification pathway, amo and hao, are present in multiple copies in the genome. The promoters for these genes were identified and characterized. It was shown that there were some differences in the transcriptional regulation of the copies of these genes
ABSTRACT Initial work focused on the regulation of nitrite reductase, the defining reaction of denit...
Biological nitrogen fixation is the microbial process by which atmospheric dinitrogen (N <sub><font ...
Some microorganisms can use nitrate as the sole source of nitrogen for biosynthesis. This project fo...
Production of nitric oxide (NO) and nitrous oxide (N(2)O) by ammonia (NH(3))-oxidizing bacteria in n...
Microorganisms capable of nitrifier denitrification and aerobic denitrification are of significant i...
The chemolithotrophic ammonia-oxidizing bacterium Nitrosomonas europaea is known to be highly resist...
Paracoccus denitrificans is a heterotrophic organism capable of oxidizing ammonia to nitrite during ...
Nitrosomonas europaea is an aerobic lithoautotrophic bacterium that uses ammonia (NH3) as its energy...
Bacterial response to nitric oxide (NO) is of major importance since NO is an obligatory intermediat...
Paracoccus denitrificans is a heterotrophic organism capable of oxidizing ammonia to nitrite during ...
ABSTRACT Global atmospheric loading of the climate-active gas nitrous oxide (N2O) continues to incre...
N2O is an important greenhouse gas and a major cause of ozone depletion. Denitrifying bacteria play ...
<div><p>Bacterial response to nitric oxide (NO) is of major importance since NO is an obligatory int...
Bacterial response to nitric oxide (NO) is of major importance since NO is an obligatory intermedia...
Nitrate and nitrite are the most preferable electron acceptors in the absence of molecular oxygen. ...
ABSTRACT Initial work focused on the regulation of nitrite reductase, the defining reaction of denit...
Biological nitrogen fixation is the microbial process by which atmospheric dinitrogen (N <sub><font ...
Some microorganisms can use nitrate as the sole source of nitrogen for biosynthesis. This project fo...
Production of nitric oxide (NO) and nitrous oxide (N(2)O) by ammonia (NH(3))-oxidizing bacteria in n...
Microorganisms capable of nitrifier denitrification and aerobic denitrification are of significant i...
The chemolithotrophic ammonia-oxidizing bacterium Nitrosomonas europaea is known to be highly resist...
Paracoccus denitrificans is a heterotrophic organism capable of oxidizing ammonia to nitrite during ...
Nitrosomonas europaea is an aerobic lithoautotrophic bacterium that uses ammonia (NH3) as its energy...
Bacterial response to nitric oxide (NO) is of major importance since NO is an obligatory intermediat...
Paracoccus denitrificans is a heterotrophic organism capable of oxidizing ammonia to nitrite during ...
ABSTRACT Global atmospheric loading of the climate-active gas nitrous oxide (N2O) continues to incre...
N2O is an important greenhouse gas and a major cause of ozone depletion. Denitrifying bacteria play ...
<div><p>Bacterial response to nitric oxide (NO) is of major importance since NO is an obligatory int...
Bacterial response to nitric oxide (NO) is of major importance since NO is an obligatory intermedia...
Nitrate and nitrite are the most preferable electron acceptors in the absence of molecular oxygen. ...
ABSTRACT Initial work focused on the regulation of nitrite reductase, the defining reaction of denit...
Biological nitrogen fixation is the microbial process by which atmospheric dinitrogen (N <sub><font ...
Some microorganisms can use nitrate as the sole source of nitrogen for biosynthesis. This project fo...