Phototrophic microorganisms include \u201canoxygenic phototrophs\u201d, which are bacteria capable of growing photosynthetically with no oxygen generation, and Cyanobacteria which are \u201coxygenic phototrophs\u201d because their photosynthetic apparatus generates oxygen. Several genera of anoxygenic phototrophs are capable of obtaining energy also from aerobic and anaerobic respiration in darkness; conversely, only a few filamentous cyanobacteria can grow in the dark on glucose or other sugars using the organic material as both carbon and energy source. The latter observation suggests that besides the bioenergetic aspect, respiration in cyanobacteria plays other roles such as to control the redox balance or to act as a scavenger for O2 du...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Rhodospirillum centenum resembles typical nonsulfur photosynthetic bacteria in a number of respects,...
Phototrophic microorganisms include “anoxygenic phototrophs”, which are bacteria capable of growing ...
Phototrophic microorganisms include “anoxygenic phototrophs”, which are bacteria capable of growing ...
none2Phototrophic microorganisms include “anoxygenic phototrophs”, which are bacteria capable of gro...
Aerobic anoxygenic phototrophs (AAPs) represent a relatively recently discovered unique BChl a-conta...
Although cyanobacteria are oxygenic phototrophic organisms, they often thrive in environments that b...
Although cyanobacteria are oxygenic phototrophic organisms, they often thrive in environments that b...
Purple non-sulfur phototrophic bacteria, exemplifed by Rhodobacter capsulatus and Rhodobacter sphaer...
AbstractOwing to the release of 13 largely or totally sequenced cyanobacterial genomes (see http://w...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Dinoroseobacter shibae is an aerobic anoxygenic phototroph and able to utilize light energy to suppo...
Although cyanobacteria are oxygenic phototrophic organisms, they often thrive in environments that b...
Recent discoveries relating to pathways of anaerobic electron transport in the Rhodospirillaceae are...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Rhodospirillum centenum resembles typical nonsulfur photosynthetic bacteria in a number of respects,...
Phototrophic microorganisms include “anoxygenic phototrophs”, which are bacteria capable of growing ...
Phototrophic microorganisms include “anoxygenic phototrophs”, which are bacteria capable of growing ...
none2Phototrophic microorganisms include “anoxygenic phototrophs”, which are bacteria capable of gro...
Aerobic anoxygenic phototrophs (AAPs) represent a relatively recently discovered unique BChl a-conta...
Although cyanobacteria are oxygenic phototrophic organisms, they often thrive in environments that b...
Although cyanobacteria are oxygenic phototrophic organisms, they often thrive in environments that b...
Purple non-sulfur phototrophic bacteria, exemplifed by Rhodobacter capsulatus and Rhodobacter sphaer...
AbstractOwing to the release of 13 largely or totally sequenced cyanobacterial genomes (see http://w...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Dinoroseobacter shibae is an aerobic anoxygenic phototroph and able to utilize light energy to suppo...
Although cyanobacteria are oxygenic phototrophic organisms, they often thrive in environments that b...
Recent discoveries relating to pathways of anaerobic electron transport in the Rhodospirillaceae are...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Rhodospirillum centenum resembles typical nonsulfur photosynthetic bacteria in a number of respects,...