Abstract Background Chlamydomonas reinhardtii is an ideal model organism not only for the study of basic metabolic processes in both plants and animals but also the production of biofuels including hydrogen. Transgenic analysis of C. reinhardtii is now well established and very convenient, but inducible exogenous gene expression systems remain under-studied. The most commonly used heat shock-inducible system has serious effects on algal cell growth and is difficult and costly to control in large-scale culture. Previous studies of hydrogen photoproduction in Chlamydomonas also use this heat-inducible system to activate target gene transcription and hydrogen synthesis. Results Here we describe a blue light-inducible system with which we achie...
Kruse O, Rupprecht J, Bader K-P, et al. Improved photobiological H-2 production in engineered green ...
Microalgae have a valuable potential for biofuels production. As a matter of fact, algae can produce...
For algal mass cultures and H2 production, conditions that maximize photosynthetic productivity and ...
Abstract Background Hydrogen photoproduction from green microalgae is regarded as a promising altern...
Abstract Background Sulfur-deprived cultivation of Chlamydomonas reinhardtii, referred as “two-stage...
In the model green alga Chlamydomonas reinhardtii, the electrons required for hydrogen production ca...
Single cell green algae (microalgae) are rapidly emerging as a platform for the production of sustai...
Single cell green algae (microalgae) are rapidly emerging as a platform for the production of sustai...
The unicellular green algae Chlamydomonas reinhardtii is a classic model for the study of flagella/c...
Photo-biological hydrogen production from water using microalgae is developing into a promising clea...
Single cell green algae (microalgae) are rapidly emerging as a platform for the production of sustai...
Toepel J, Illmer-Kephalides M, Jaenicke S, et al. New insights into Chlamydomonas reinhardtii hydrog...
Chlamydomonas reinhardtii cy6Nac2.49 is a genetically modified algal strain that activates photosynt...
peer reviewedHydrogen production with Chlamydomonas reinhardtii induced by sulphur starvation is a m...
Green algae present a unique platform for bioengineering and biomanufacturing; they grow rapidly, ph...
Kruse O, Rupprecht J, Bader K-P, et al. Improved photobiological H-2 production in engineered green ...
Microalgae have a valuable potential for biofuels production. As a matter of fact, algae can produce...
For algal mass cultures and H2 production, conditions that maximize photosynthetic productivity and ...
Abstract Background Hydrogen photoproduction from green microalgae is regarded as a promising altern...
Abstract Background Sulfur-deprived cultivation of Chlamydomonas reinhardtii, referred as “two-stage...
In the model green alga Chlamydomonas reinhardtii, the electrons required for hydrogen production ca...
Single cell green algae (microalgae) are rapidly emerging as a platform for the production of sustai...
Single cell green algae (microalgae) are rapidly emerging as a platform for the production of sustai...
The unicellular green algae Chlamydomonas reinhardtii is a classic model for the study of flagella/c...
Photo-biological hydrogen production from water using microalgae is developing into a promising clea...
Single cell green algae (microalgae) are rapidly emerging as a platform for the production of sustai...
Toepel J, Illmer-Kephalides M, Jaenicke S, et al. New insights into Chlamydomonas reinhardtii hydrog...
Chlamydomonas reinhardtii cy6Nac2.49 is a genetically modified algal strain that activates photosynt...
peer reviewedHydrogen production with Chlamydomonas reinhardtii induced by sulphur starvation is a m...
Green algae present a unique platform for bioengineering and biomanufacturing; they grow rapidly, ph...
Kruse O, Rupprecht J, Bader K-P, et al. Improved photobiological H-2 production in engineered green ...
Microalgae have a valuable potential for biofuels production. As a matter of fact, algae can produce...
For algal mass cultures and H2 production, conditions that maximize photosynthetic productivity and ...