The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system, i.e., a far-red light-driven proton pump, is widely proposed to maximize photosynthetic efficiency via expanding the absorption spectrum of photosynthetically active radiation. As a first step in this approach, Gloeobacter rhodopsin was expressed in a PSI-deletion strain of Synechocystis sp. PCC6803. Functional expression of Gloeobacter rhodopsin, in contrast to Proteorhodopsin, did not stimulate the rate of photoheterotrophic growth of this Synechocystis strain, analyzed with growth rate measurements and competition experiments. Nevertheless, analysis of oxygen uptake and—production rates of the Gloeobacter rhodopsin-expressing strains, re...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
Contains fulltext : 205161.pdf (publisher's version ) (Open Access)The approach of...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
Contains fulltext : 174417.pdf (publisher's version ) (Closed access)Proteorhodops...
To achieve success in setting up sustainability applications, photosynthetic organisms are required ...
A homologue of type I rhodopsin was found in the unicellular Gloeobacter violaceus PCC7421, which is...
A homologue of type I rhodopsin was found in the unicellular Gloeobacter violaceus PCC7421, which is...
To fill the “green absorption gap”, a green absorbing proteorhodopsin was expressed in a PSI-deletio...
Proteorhodopsins are light-driven proton pumps that occur widespread in Nature, where they function ...
Proteorhodopsins are light-driven proton pumps that occur widespread in Nature, where they function ...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
Contains fulltext : 205161.pdf (publisher's version ) (Open Access)The approach of...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
The approach of providing an oxygenic photosynthetic organism with a cyclic electron transfer system...
Contains fulltext : 174417.pdf (publisher's version ) (Closed access)Proteorhodops...
To achieve success in setting up sustainability applications, photosynthetic organisms are required ...
A homologue of type I rhodopsin was found in the unicellular Gloeobacter violaceus PCC7421, which is...
A homologue of type I rhodopsin was found in the unicellular Gloeobacter violaceus PCC7421, which is...
To fill the “green absorption gap”, a green absorbing proteorhodopsin was expressed in a PSI-deletio...
Proteorhodopsins are light-driven proton pumps that occur widespread in Nature, where they function ...
Proteorhodopsins are light-driven proton pumps that occur widespread in Nature, where they function ...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...
A key goal of synthetic biology is to engineer organisms that can use solar energy to convert CO2 to...