Sulfide inhibits oxygenic photosynthesis by blocking electron transfer between HO and the oxygen-evolving complex in the D1 protein of Photosystem II. The ability of cyanobacteria to counter this effect has implications for understanding the productivity of benthic microbial mats in sulfidic environments throughout Earth history. In Lake Fryxell, Antarctica, the benthic, filamentous cyanobacterium creates a 1-2 mm thick layer of 50 µmol L O in otherwise sulfidic water, demonstrating that it sustains oxygenic photosynthesis in the presence of sulfide. A metagenome-assembled genome of indicates a genetic capacity for oxygenic photosynthesis, including multiple copies of (encoding the D1 protein of Photosystem II), and anoxygenic photosynth...
Physiological and molecular phylogenetic approaches were used to investigate variation among 12 cyan...
We used microsensors to investigate the combinatory effect of hydrogen sulfide (H2S) and light on ox...
Oxygenic and anoxygenic photosynthesis were studied with microsensors in microbial mats found at 9-1...
Sulfide inhibits oxygenic photosynthesis by blocking electron transfer between H2O and the oxygen-ev...
Antarctic cyanobacteria form microbial mats in perennially ice-covered lakes in the McMurdo Dry Vall...
Cyanobacterial mats were hotspots of biogeochemical cycling during the Precambrian. However, mechani...
Cyanobacterial mats were hotspots of biogeochemical cycling during the Precambrian. However, mechani...
Cyanobacterial mats were hotspots of biogeochemical cycling during the Precambrian. However, mechani...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
We used microsensors to study the regulation of anoxygenic and oxygenic photosynthesis (AP and OP, r...
The capability to perform oxygenic photosynthesis likely evolved in a cyanobacterial ancestor, proba...
We used microsensors to study the regulation of anoxygenic and oxygenic photosynthesis (AP and OP, r...
The extent of oxygenated environments on the early Earth was much lower than today, and cyanobacteri...
ABSTRACT Eutrophication and deoxygenation possibly occur in coastal waters due to excessive nutrient...
We report the isolation of a pinnacle-forming cyanobacterium isolated from a microbial mat covering ...
Physiological and molecular phylogenetic approaches were used to investigate variation among 12 cyan...
We used microsensors to investigate the combinatory effect of hydrogen sulfide (H2S) and light on ox...
Oxygenic and anoxygenic photosynthesis were studied with microsensors in microbial mats found at 9-1...
Sulfide inhibits oxygenic photosynthesis by blocking electron transfer between H2O and the oxygen-ev...
Antarctic cyanobacteria form microbial mats in perennially ice-covered lakes in the McMurdo Dry Vall...
Cyanobacterial mats were hotspots of biogeochemical cycling during the Precambrian. However, mechani...
Cyanobacterial mats were hotspots of biogeochemical cycling during the Precambrian. However, mechani...
Cyanobacterial mats were hotspots of biogeochemical cycling during the Precambrian. However, mechani...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
We used microsensors to study the regulation of anoxygenic and oxygenic photosynthesis (AP and OP, r...
The capability to perform oxygenic photosynthesis likely evolved in a cyanobacterial ancestor, proba...
We used microsensors to study the regulation of anoxygenic and oxygenic photosynthesis (AP and OP, r...
The extent of oxygenated environments on the early Earth was much lower than today, and cyanobacteri...
ABSTRACT Eutrophication and deoxygenation possibly occur in coastal waters due to excessive nutrient...
We report the isolation of a pinnacle-forming cyanobacterium isolated from a microbial mat covering ...
Physiological and molecular phylogenetic approaches were used to investigate variation among 12 cyan...
We used microsensors to investigate the combinatory effect of hydrogen sulfide (H2S) and light on ox...
Oxygenic and anoxygenic photosynthesis were studied with microsensors in microbial mats found at 9-1...