Autotrophic microorganisms convert CO2 into biomass by deriving energy from light or inorganic electron donors. These CO2-fixing microorganisms have a large, but so far only partially realized, potential for the sustainable production of chemicals and biofuels. Productivities have been improved in autotrophic hosts through the introduction of production pathways and the modification of autotrophic systems by genetic engineering. In addition, approaches are emerging in which CO2 fixation pathways and energy-harvesting systems are transplanted into heterotrophic model microorganisms. Alternative promising concepts are hybrid production systems of autotrophs and heterotrophs, and bio-inorganic hybrids of autotrophic microorganisms with electro...
Engineered microorganisms capable of producing chemical commodities have emerged as sustainable alte...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
Anaerobic microorganisms present in diverse ecological niches employ alternative strategies for ener...
Autotrophic microorganisms convert CO2 into biomass by deriving energy from light or inorganic elect...
Autotrophic microorganisms convert CO2 into biomass by deriving energy from light or inorganic elect...
Organisms are either heterotrophic or autotrophic, meaning that they cover their carbon requirements...
Organisms are either heterotrophic or autotrophic, meaning that they cover their carbon requirements...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
Organisms are either heterotrophic or autotrophic, meaning that they cover their carbon requirements...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
Biological chemical production has gained traction in recent years as a promising renewable alternat...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
The development of sustainable synthesis methods for societally important chemical products which se...
The development of sustainable synthesis methods for societally important chemical products which se...
Engineered microorganisms capable of producing chemical commodities have emerged as sustainable alte...
Engineered microorganisms capable of producing chemical commodities have emerged as sustainable alte...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
Anaerobic microorganisms present in diverse ecological niches employ alternative strategies for ener...
Autotrophic microorganisms convert CO2 into biomass by deriving energy from light or inorganic elect...
Autotrophic microorganisms convert CO2 into biomass by deriving energy from light or inorganic elect...
Organisms are either heterotrophic or autotrophic, meaning that they cover their carbon requirements...
Organisms are either heterotrophic or autotrophic, meaning that they cover their carbon requirements...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
Organisms are either heterotrophic or autotrophic, meaning that they cover their carbon requirements...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
Biological chemical production has gained traction in recent years as a promising renewable alternat...
Electroautotrophic microorganisms can uptake electrons from extracellular solid donors such as metal...
The development of sustainable synthesis methods for societally important chemical products which se...
The development of sustainable synthesis methods for societally important chemical products which se...
Engineered microorganisms capable of producing chemical commodities have emerged as sustainable alte...
Engineered microorganisms capable of producing chemical commodities have emerged as sustainable alte...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
Anaerobic microorganisms present in diverse ecological niches employ alternative strategies for ener...