Application of the Truncated Light-harvesting Antenna (TLA) concept in photosynthesis entails a determined genetic engineering effort to minimize the light-harvesting antenna size of the photosystems in order to increase solar energy conversion efficiencies and the photosynthetic productivity of cyanobacteria and microalgae in mass cultures under bright sunlight cultivation conditions. Evidence in the literature supports the notion that TLA technology can significantly improve sunlight-to-product (e.g., biomass or hydrogen) energy conversion efficiencies. Approaches to generate TLA-strains in cyanobacteria and microalgae and their functional properties are summarized and discussed in this chapter. TLA-cyanobacteria were generated upon genet...
The truncated light-harvesting antenna2 (tla2) mutant of Chlamydomonas reinhardtii showed a lighter-...
AbstractOver 50% of the energy losses associated with the conversion of solar energy into chemical e...
Beckmann J, Lehr F, Finazzi G, et al. Improvement of light to biomass conversion by de-regulation of...
Application of the Truncated Light-harvesting Antenna (TLA) concept in photosynthesis entails a dete...
The theoretical maxima of solar energy conversion efficiencies and productivities in oxygenic photos...
The theoretical maxima of solar energy conversion efficiencies and productivities in oxygenic photos...
The concept of the Truncated Light-harvesting chlorophyll Antenna (TLA) size, as a tool by which to ...
The concept of the Truncated Light-harvesting chlorophyll Antenna (TLA) size, as a tool by which to ...
Main conclusionEvidence shows that decreasing the light-harvesting antenna size of the photosystems ...
Main conclusionEvidence shows that decreasing the light-harvesting antenna size of the photosystems ...
Microalgae and the associated biomass have been advocated for various eco-friendly applications. Alt...
Sunlight energy largely exceeds the energy required by anthropic activities, and therefore its explo...
The Chlamydomonas reinhardtii truncated light-harvesting antenna 4 (tla4) DNA transposon mutant has ...
Photosynthesis, the physico-chemical process converting sunlight into chemical energy, is the basis ...
The truncated light-harvesting antenna2 (tla2) mutant of Chlamydomonas reinhardtii showed a lighter-...
The truncated light-harvesting antenna2 (tla2) mutant of Chlamydomonas reinhardtii showed a lighter-...
AbstractOver 50% of the energy losses associated with the conversion of solar energy into chemical e...
Beckmann J, Lehr F, Finazzi G, et al. Improvement of light to biomass conversion by de-regulation of...
Application of the Truncated Light-harvesting Antenna (TLA) concept in photosynthesis entails a dete...
The theoretical maxima of solar energy conversion efficiencies and productivities in oxygenic photos...
The theoretical maxima of solar energy conversion efficiencies and productivities in oxygenic photos...
The concept of the Truncated Light-harvesting chlorophyll Antenna (TLA) size, as a tool by which to ...
The concept of the Truncated Light-harvesting chlorophyll Antenna (TLA) size, as a tool by which to ...
Main conclusionEvidence shows that decreasing the light-harvesting antenna size of the photosystems ...
Main conclusionEvidence shows that decreasing the light-harvesting antenna size of the photosystems ...
Microalgae and the associated biomass have been advocated for various eco-friendly applications. Alt...
Sunlight energy largely exceeds the energy required by anthropic activities, and therefore its explo...
The Chlamydomonas reinhardtii truncated light-harvesting antenna 4 (tla4) DNA transposon mutant has ...
Photosynthesis, the physico-chemical process converting sunlight into chemical energy, is the basis ...
The truncated light-harvesting antenna2 (tla2) mutant of Chlamydomonas reinhardtii showed a lighter-...
The truncated light-harvesting antenna2 (tla2) mutant of Chlamydomonas reinhardtii showed a lighter-...
AbstractOver 50% of the energy losses associated with the conversion of solar energy into chemical e...
Beckmann J, Lehr F, Finazzi G, et al. Improvement of light to biomass conversion by de-regulation of...