Cyanobacteria are natural photosynthetic microbes which can be engineered for sustainable conversion of solar energy and carbon dioxide into chemical products. Attempts to improve target production often require an improved understanding of the native cyanobacterial host system. Valuable insights into cyanobacterial metabolism, biochemistry and physiology have been steadily increasing in recent years, stimulating key advancements of cyanobacteria as cell factories for biochemical, including biofuel, production. In the present review, we summarize the current progress in engineering cyanobacteria and discuss the achieved and potential utilization of these advances in cyanobacteria for the production of the bulk chemical butanol, specifically...
Direct conversion of CO2 into chemical production through cyanobacteria is a desirable solution to u...
The cyanobacterium Synechocystis sp. PCC 6803 is an attractive target for engineering novel metaboli...
Cyanobacteria hold significant potential as industrial biotechnology (IB) platforms for the producti...
Cyanobacteria are natural photosynthetic microbes which can be engineered for sustainable conversion...
There is an urgent demand for renewable alternatives to fossil fuels since the extraction and utiliz...
Background: Cyanobacteria are emerging as green cell factories for sustainable biofuel and chemical ...
Cyanobacteria are photoautotrophic microorganisms which can be engineered to directly convert CO2 an...
Abstract Background Cyanobacteria, oxygenic photoautotrophic prokaryotes, can be engineered to produ...
Background: Cyanobacteria, oxygenic photoautotrophic prokaryotes, can be engineered to produce vario...
As world population increases and fossil fuel-based resource depletes, production of renewable chemi...
Engineering cyanobacteria into photosynthetic microbial cell factories for the production of biochem...
The production of fuels and other valuable chemicals via biological routes has gained significant at...
Cyanobacteria are photosynthetic microorganisms capable of using solar energy to convert CO2 and H2O...
The overall goal of my thesis research is to produce four-carbon alcohols such as 1-butanol and 2,3-...
Aviation accounts for a significant part of the world’s CO2 emission from the transport sector, but ...
Direct conversion of CO2 into chemical production through cyanobacteria is a desirable solution to u...
The cyanobacterium Synechocystis sp. PCC 6803 is an attractive target for engineering novel metaboli...
Cyanobacteria hold significant potential as industrial biotechnology (IB) platforms for the producti...
Cyanobacteria are natural photosynthetic microbes which can be engineered for sustainable conversion...
There is an urgent demand for renewable alternatives to fossil fuels since the extraction and utiliz...
Background: Cyanobacteria are emerging as green cell factories for sustainable biofuel and chemical ...
Cyanobacteria are photoautotrophic microorganisms which can be engineered to directly convert CO2 an...
Abstract Background Cyanobacteria, oxygenic photoautotrophic prokaryotes, can be engineered to produ...
Background: Cyanobacteria, oxygenic photoautotrophic prokaryotes, can be engineered to produce vario...
As world population increases and fossil fuel-based resource depletes, production of renewable chemi...
Engineering cyanobacteria into photosynthetic microbial cell factories for the production of biochem...
The production of fuels and other valuable chemicals via biological routes has gained significant at...
Cyanobacteria are photosynthetic microorganisms capable of using solar energy to convert CO2 and H2O...
The overall goal of my thesis research is to produce four-carbon alcohols such as 1-butanol and 2,3-...
Aviation accounts for a significant part of the world’s CO2 emission from the transport sector, but ...
Direct conversion of CO2 into chemical production through cyanobacteria is a desirable solution to u...
The cyanobacterium Synechocystis sp. PCC 6803 is an attractive target for engineering novel metaboli...
Cyanobacteria hold significant potential as industrial biotechnology (IB) platforms for the producti...