Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if enhanced through bioengineering approaches, have the potential to address major nutrient imbalances in global crop production by supplementing inorganic nitrogen fertilisers. However, nitrogen fixation is a highly resource-costly adaptation and is de-repressed only in environments in which sources of reduced nitrogen are scarce. Here we investigate nitrogen fixation (nif) gene expression and nitrogen starvation response signaling in the model diazotroph Klebsiella oxytoca (Ko) M5a1 during ammonium depletion and the transition to growth on atmospheric N2. Exploratory RNA-sequencing revealed that over 50% of genes were differentially expressed...
Abstract Background The metabolic capacity for nitrogen fixation is known to be present in several p...
Engineering nitrogen fixation in eukaryotes requires high expression of functional nitrogenase struc...
Abstract\ud \ud \ud \ud Background\ud ...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
The energetic requirements for biological nitrogen fixation necessitate stringent regulation of this...
Biological nitrogen fixation (BNF) is the nitrogenase-catalyzed conversion of dinitrogen to ammonia ...
Since nitrogenase is extremely vulnerable to oxygen, aerobic or micro-aerobic nitrogen-fixing organi...
Since nitrogenase is extremely vulnerable to oxygen, aerobic or micro-aerobic nitrogen-fixing organi...
Due to the costly energy demands of nitrogen (N) fixation, diazotrophic bacteria have evolved comple...
Due to the costly energy demands of nitrogen (N) fixation, diazotrophic bacteria have evolved comple...
The Tropical North Atlantic (TNAtl) plays a critical role in the marine nitrogen cycle, as it suppor...
Abstract Background The metabolic capacity for nitrogen fixation is known to be present in several p...
Engineering nitrogen fixation in eukaryotes requires high expression of functional nitrogenase struc...
Abstract\ud \ud \ud \ud Background\ud ...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
Free-living nitrogen-fixing bacteria can improve growth yields of some non-leguminous plants and, if...
The energetic requirements for biological nitrogen fixation necessitate stringent regulation of this...
Biological nitrogen fixation (BNF) is the nitrogenase-catalyzed conversion of dinitrogen to ammonia ...
Since nitrogenase is extremely vulnerable to oxygen, aerobic or micro-aerobic nitrogen-fixing organi...
Since nitrogenase is extremely vulnerable to oxygen, aerobic or micro-aerobic nitrogen-fixing organi...
Due to the costly energy demands of nitrogen (N) fixation, diazotrophic bacteria have evolved comple...
Due to the costly energy demands of nitrogen (N) fixation, diazotrophic bacteria have evolved comple...
The Tropical North Atlantic (TNAtl) plays a critical role in the marine nitrogen cycle, as it suppor...
Abstract Background The metabolic capacity for nitrogen fixation is known to be present in several p...
Engineering nitrogen fixation in eukaryotes requires high expression of functional nitrogenase struc...
Abstract\ud \ud \ud \ud Background\ud ...