All cyanobacterial mats that have been investigated have been proven to be diazotrophic, i.e., use atmospheric dinitrogen (N2) as the source of nitrogen. Many cyanobacteria possess the capacity to fix N2 and different species have evolved various ways to cope with the sensitivity of nitrogenase toward oxygen which is produced by these oxygenic phototrophs. These different strategies give rise to complex patterns of nitrogenase activity in microbial mats. Nitrogenase activity may exhibit complex variations over a day–night cycle but different types of microbial mats may also have their own characteristic patterns. Besides the cyanobacteria, numerous other members of the Bacteria as well as some Archaea are known to be diazotrophic. The compl...
The structure of the microbial community and the diversity of the functional gene for dinitrogenase ...
Microbial dinitrogen (N2) fixation, the nitrogenase enzyme-catalysed reduction of N2 gas into biolog...
The potential for dinitrogen fixation by heterocystous cyanobacteria isolated from soils of differen...
Cyanobacteria are oxygenic photosynthetic bacteria that are widespread in marine, freshwater and ter...
Cyanobacteria are oxygenic photosynthetic bacteria that are widespread in marine, freshwater and ter...
Experimental manipulations of a microbial mat community were performed to determine sources of energ...
The aim of this study was to determine the potential of microbial mats to fix nitrogen and to identi...
Four microbial mat-forming, non-axenic, strains of the non-heterocystous, filamentous, cyanobacteria...
Nitrogen is an essential and major component of biomass. While virtually all life depends on combine...
Nitrogen is an essential and major component of biomass. While virtually all life depends on combine...
The fixation of nitrogen in cyanobacterial mats situated along the littoral gradient on a Dutch barr...
Many, though not all, non-heterocystous cyanobacteria can fix N-2. However, very few strains can fix...
In situ nitrogen fixation was investigated in a cyanobacterial mat growing on the bed of rocks of th...
Cyanobacteria capable of fixing dinitrogen exhibit various strategies to protect nitrogenase from in...
Four microbial mat-forming, non-axenic, strains of the non-heterocystous, filamentous, cyanobacteria...
The structure of the microbial community and the diversity of the functional gene for dinitrogenase ...
Microbial dinitrogen (N2) fixation, the nitrogenase enzyme-catalysed reduction of N2 gas into biolog...
The potential for dinitrogen fixation by heterocystous cyanobacteria isolated from soils of differen...
Cyanobacteria are oxygenic photosynthetic bacteria that are widespread in marine, freshwater and ter...
Cyanobacteria are oxygenic photosynthetic bacteria that are widespread in marine, freshwater and ter...
Experimental manipulations of a microbial mat community were performed to determine sources of energ...
The aim of this study was to determine the potential of microbial mats to fix nitrogen and to identi...
Four microbial mat-forming, non-axenic, strains of the non-heterocystous, filamentous, cyanobacteria...
Nitrogen is an essential and major component of biomass. While virtually all life depends on combine...
Nitrogen is an essential and major component of biomass. While virtually all life depends on combine...
The fixation of nitrogen in cyanobacterial mats situated along the littoral gradient on a Dutch barr...
Many, though not all, non-heterocystous cyanobacteria can fix N-2. However, very few strains can fix...
In situ nitrogen fixation was investigated in a cyanobacterial mat growing on the bed of rocks of th...
Cyanobacteria capable of fixing dinitrogen exhibit various strategies to protect nitrogenase from in...
Four microbial mat-forming, non-axenic, strains of the non-heterocystous, filamentous, cyanobacteria...
The structure of the microbial community and the diversity of the functional gene for dinitrogenase ...
Microbial dinitrogen (N2) fixation, the nitrogenase enzyme-catalysed reduction of N2 gas into biolog...
The potential for dinitrogen fixation by heterocystous cyanobacteria isolated from soils of differen...