Knowledge of the genetic basis for autotrophic metabolism is valuable since it relates to both the emergence of life and to the metabolic engineering challenge of incorporating CO2 as a potential substrate for biorefining. The most common CO2 fixation pathway is the Calvin cycle, which utilizes Rubisco and phosphoribulokinase enzymes. We searched thousands of microbial genomes and found that 6.0% contained the Calvin cycle. We then contrasted the genomes of Calvin cycle-positive, non-cyanobacterial microbes and their closest relatives by enrichment analysis, ancestral character estimation, and random forest machine learning, to explore genetic adaptations associated with acquisition of the Calvin cycle. The Calvin cycle overlaps with the pe...
Methane is an important greenhouse gas and the most abundant hydrocarbon in the Earth's atmosphere. ...
Cyanobacteria are photosynthetic organisms with the potential to sustainably produce carbonbased end...
Cyanobacteria fix atmospheric CO2 to biomass and through metabolic engineering can also act as photo...
The Calvin cycle of carbon dioxide fixation constitutes a biosynthetic pathway for the generation of...
Metabolite-level regulation of enzyme activity is important for microbes to cope with environmental ...
Biological CO2 fixation is a crucial process carried out by plants and a number of microorganisms, w...
During autotrophic growth of Xanthobacter flavus, energy derived from the oxidation of hydrogen meth...
During autotrophic growth of Xanthobacter flavus, energy derived from the oxidation of hydrogen meth...
The Calvin–Benson cycle is the basis of carbon fixation in all photosynthetic organisms. However, re...
Autotrophic bactcria are capable of CO2 fixation via the Calvin cycle, emplofng energy derived from ...
The Calvin-Benson (CBB) cycle is an essential part of nature. This phenomenon allows carbon molecule...
Photoautotrophic microorganisms are increasingly explored for the conversion of atmospheric carbon d...
The Calvin-Benson-Bassham (CBB) cycle is the ancestral CO2 assimilation pathway and is found in all ...
During autotrophic growth of Xanthobacterflavus, energy derived from the oxidation of hydrogen metha...
Structural genes encoding Calvin cycle enzymes in Rhodobacter sphaeroides are duplicated and organiz...
Methane is an important greenhouse gas and the most abundant hydrocarbon in the Earth's atmosphere. ...
Cyanobacteria are photosynthetic organisms with the potential to sustainably produce carbonbased end...
Cyanobacteria fix atmospheric CO2 to biomass and through metabolic engineering can also act as photo...
The Calvin cycle of carbon dioxide fixation constitutes a biosynthetic pathway for the generation of...
Metabolite-level regulation of enzyme activity is important for microbes to cope with environmental ...
Biological CO2 fixation is a crucial process carried out by plants and a number of microorganisms, w...
During autotrophic growth of Xanthobacter flavus, energy derived from the oxidation of hydrogen meth...
During autotrophic growth of Xanthobacter flavus, energy derived from the oxidation of hydrogen meth...
The Calvin–Benson cycle is the basis of carbon fixation in all photosynthetic organisms. However, re...
Autotrophic bactcria are capable of CO2 fixation via the Calvin cycle, emplofng energy derived from ...
The Calvin-Benson (CBB) cycle is an essential part of nature. This phenomenon allows carbon molecule...
Photoautotrophic microorganisms are increasingly explored for the conversion of atmospheric carbon d...
The Calvin-Benson-Bassham (CBB) cycle is the ancestral CO2 assimilation pathway and is found in all ...
During autotrophic growth of Xanthobacterflavus, energy derived from the oxidation of hydrogen metha...
Structural genes encoding Calvin cycle enzymes in Rhodobacter sphaeroides are duplicated and organiz...
Methane is an important greenhouse gas and the most abundant hydrocarbon in the Earth's atmosphere. ...
Cyanobacteria are photosynthetic organisms with the potential to sustainably produce carbonbased end...
Cyanobacteria fix atmospheric CO2 to biomass and through metabolic engineering can also act as photo...