The evolution of aerobic respiration was likely linked to the origins of oxygenic Cyanobacteria. Close phylogenetic neighbors to Cyanobacteria, such as Margulisbacteria (RBX-1 and ZB3), Saganbacteria (WOR-1), Melainabacteria and Sericytochromatia, may constrain the metabolic platform in which aerobic respiration arose. Here, we analyze genomic sequences and predict that sediment-associated Margulisbacteria have a fermentation-based metabolism featuring a variety of hydrogenases, a streamlined nitrogenase, and electron bifurcating complexes involved in cycling of reducing equivalents. The genomes of ocean-associated Margulisbacteria encode an electron transport chain that may support aerobic growth. Some Saganbacteria genomes encode various ...
Cyanobacteria were responsible for the oxygenation of the ancient atmosphere; however, the evolution...
Cyanobacteria were responsible for the oxygenation of the ancient atmosphere; however, the evolution...
Anaerobic metabolic pathways allow unicellular organisms to tolerate or colonize anoxic environments...
The evolution of aerobic respiration was likely linked to the origins of oxygenic Cyanobacteria. Clo...
The evolution of oxygenic photosynthesis was one of the most transformative evolutionary events in E...
Diverse aerobic bacteria persist by consuming atmospheric hydrogen (H2) using group 1h [NiFe]-hydrog...
Diverse aerobic bacteria persist by consuming atmospheric hydrogen (H) using group 1h [NiFe]-hydroge...
The evolution of oxygenic photosynthesis was one of the most transformative evolutionary events in E...
The origin of eukaryotes is a major open question in evolutionary biology. Multiple hypotheses posit...
The origin of oxygenic photosynthesis in Cyanobacteria led to the rise of oxygen on Earth ~2.3 billi...
Background The anaerobic degradation of organic matter in natural environments, and the biotechnical...
Background The anaerobic degradation of organic matter in natural environments, and the biotechnical...
Anaerobic thermophiles inhabit relic environments that resemble the early Earth. However, the lineag...
For well over a hundred years, members of the bacterial phylum Cyanobacteria have been considered st...
Acetomicrobium hydrogeniformans OS1 is an obligate anaerobic bacterial species of the phylum Synergi...
Cyanobacteria were responsible for the oxygenation of the ancient atmosphere; however, the evolution...
Cyanobacteria were responsible for the oxygenation of the ancient atmosphere; however, the evolution...
Anaerobic metabolic pathways allow unicellular organisms to tolerate or colonize anoxic environments...
The evolution of aerobic respiration was likely linked to the origins of oxygenic Cyanobacteria. Clo...
The evolution of oxygenic photosynthesis was one of the most transformative evolutionary events in E...
Diverse aerobic bacteria persist by consuming atmospheric hydrogen (H2) using group 1h [NiFe]-hydrog...
Diverse aerobic bacteria persist by consuming atmospheric hydrogen (H) using group 1h [NiFe]-hydroge...
The evolution of oxygenic photosynthesis was one of the most transformative evolutionary events in E...
The origin of eukaryotes is a major open question in evolutionary biology. Multiple hypotheses posit...
The origin of oxygenic photosynthesis in Cyanobacteria led to the rise of oxygen on Earth ~2.3 billi...
Background The anaerobic degradation of organic matter in natural environments, and the biotechnical...
Background The anaerobic degradation of organic matter in natural environments, and the biotechnical...
Anaerobic thermophiles inhabit relic environments that resemble the early Earth. However, the lineag...
For well over a hundred years, members of the bacterial phylum Cyanobacteria have been considered st...
Acetomicrobium hydrogeniformans OS1 is an obligate anaerobic bacterial species of the phylum Synergi...
Cyanobacteria were responsible for the oxygenation of the ancient atmosphere; however, the evolution...
Cyanobacteria were responsible for the oxygenation of the ancient atmosphere; however, the evolution...
Anaerobic metabolic pathways allow unicellular organisms to tolerate or colonize anoxic environments...