The extent of oxygenated environments on the early Earth was much lower than today, and cyanobacteria were critical players in Earth's shift from widespread anoxia to oxygenated surface environments. Extant cyanobacteria that aggregate into cones, tufts and ridges are used to understand the long record of photosynthesis and microbe-mineral interactions during times when oxygen was much lower, i.e., the Archean and the Proterozoic. To better understand the metabolic versatility and physiological properties of these organisms, we examined publicly available genomes of cyanobacteria from modern terrestrial hydrothermal systems and a newly sequenced genome of a cyanobacterium isolated from conical and ridged microbialites that grow in occasiona...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Phototrophic microbial mat communities from 60 °C and 65 °C regions in the effluent channels of Mush...
When cyanobacteria originated and diversified, and what their ancient traits were, remain critical u...
Cyanobacteria are renowned as the mediators of Earth’s oxygenation. However, little is known about t...
The capability to perform oxygenic photosynthesis likely evolved in a cyanobacterial ancestor, proba...
Recent progress based on single-cell genomics and metagenomic investigations of archaea in a variety...
Recent progress based on single-cell genomics and metagenomic investigations of archaea in a variety...
The subsurface biosphere is largely unexplored and contains a broad diversity of uncultured microbes...
Sulfide inhibits oxygenic photosynthesis by blocking electron transfer between H2O and the oxygen-ev...
Cyanobacteria are among the most ancient of evolutionary lineages, oxygenic photosynthesizers that m...
Microbes of the phylum Aigarchaeota are widely distributed in geothermal environments, but their phy...
Sulfide inhibits oxygenic photosynthesis by blocking electron transfer between HO and the oxygen-evo...
We report the isolation of a pinnacle-forming cyanobacterium isolated from a microbial mat covering ...
Antarctic cyanobacteria form microbial mats in perennially ice-covered lakes in the McMurdo Dry Vall...
Photosynthetic Cyanobacteria and their descendants are the only known organisms capable of oxygenic ...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Phototrophic microbial mat communities from 60 °C and 65 °C regions in the effluent channels of Mush...
When cyanobacteria originated and diversified, and what their ancient traits were, remain critical u...
Cyanobacteria are renowned as the mediators of Earth’s oxygenation. However, little is known about t...
The capability to perform oxygenic photosynthesis likely evolved in a cyanobacterial ancestor, proba...
Recent progress based on single-cell genomics and metagenomic investigations of archaea in a variety...
Recent progress based on single-cell genomics and metagenomic investigations of archaea in a variety...
The subsurface biosphere is largely unexplored and contains a broad diversity of uncultured microbes...
Sulfide inhibits oxygenic photosynthesis by blocking electron transfer between H2O and the oxygen-ev...
Cyanobacteria are among the most ancient of evolutionary lineages, oxygenic photosynthesizers that m...
Microbes of the phylum Aigarchaeota are widely distributed in geothermal environments, but their phy...
Sulfide inhibits oxygenic photosynthesis by blocking electron transfer between HO and the oxygen-evo...
We report the isolation of a pinnacle-forming cyanobacterium isolated from a microbial mat covering ...
Antarctic cyanobacteria form microbial mats in perennially ice-covered lakes in the McMurdo Dry Vall...
Photosynthetic Cyanobacteria and their descendants are the only known organisms capable of oxygenic ...
Before the Earth's complete oxygenation (0.58 to 0.55 billion years [Ga] ago), the photic zone of th...
Phototrophic microbial mat communities from 60 °C and 65 °C regions in the effluent channels of Mush...
When cyanobacteria originated and diversified, and what their ancient traits were, remain critical u...