Solar energy captured by pigments embedded in light-harvesting complexes can be transferred to neighboring pigments, dissipated, or emitted as fluorescence. Only when it reaches a reaction center is the excitation energy stabilized in the form of a charge separation and converted into chemical energy. Well-directed and regulated energy transfer within the network of pigments is therefore of crucial importance for the success of the photosynthetic processes. Using single-molecule spectroscopy, we show that phycocyanin can dynamically switch between two spectrally distinct states originating from two different conformations. Unexpectedly, one of the two states has a red-shifted emission spectrum. This state is not involved in energy dissipati...
Photosynthetic organisms have found various smart ways to cope with unexpected changes in light cond...
Chlorophyll, the essential part of the photosynthetic reactien cen-ter, absorbs light between 45D an...
Phycobilisomes in cyanobacteria and red algae are large protein complexes that absorb light and tran...
Solar energy captured by pigments embedded in light-harvesting complexes can be transferred to neigh...
Solar energy captured by pigments embedded in light-harvesting complexes can be transferred to neigh...
The main light-harvesting pigment-protein complex of cyanobacteria and certain algae is the phycobil...
Photosynthetic organisms cope with changes in light quality by balancing the excitation energy flow ...
Cyanobacteria perform photosynthesis with the use of large light-harvesting antennae called phycobil...
Photosynthetic organisms harvest light energy, utilizing the absorption and energy-transfer properti...
Abstract-The excited state kinetics of trimeric C-phycocyanin from Masrigocladus /arnirzosu.c. has b...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
AbstractPhycobilisomes (PBS) are the major light-harvesting, protein–pigment complexes in cyanobacte...
AbstractPhycoerythrocyanin (PEC) is part of the light harvesting system of cyanobacteria. The PEC mo...
Phycobilisomes are the major light harvesting complexes for cyanobacteria and phycocyanin is the pr...
AbstractPhycoerythrocyanin (PEC) is part of the phycobilisome of cyanobacteria. Its monomer carries ...
Photosynthetic organisms have found various smart ways to cope with unexpected changes in light cond...
Chlorophyll, the essential part of the photosynthetic reactien cen-ter, absorbs light between 45D an...
Phycobilisomes in cyanobacteria and red algae are large protein complexes that absorb light and tran...
Solar energy captured by pigments embedded in light-harvesting complexes can be transferred to neigh...
Solar energy captured by pigments embedded in light-harvesting complexes can be transferred to neigh...
The main light-harvesting pigment-protein complex of cyanobacteria and certain algae is the phycobil...
Photosynthetic organisms cope with changes in light quality by balancing the excitation energy flow ...
Cyanobacteria perform photosynthesis with the use of large light-harvesting antennae called phycobil...
Photosynthetic organisms harvest light energy, utilizing the absorption and energy-transfer properti...
Abstract-The excited state kinetics of trimeric C-phycocyanin from Masrigocladus /arnirzosu.c. has b...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
AbstractPhycobilisomes (PBS) are the major light-harvesting, protein–pigment complexes in cyanobacte...
AbstractPhycoerythrocyanin (PEC) is part of the light harvesting system of cyanobacteria. The PEC mo...
Phycobilisomes are the major light harvesting complexes for cyanobacteria and phycocyanin is the pr...
AbstractPhycoerythrocyanin (PEC) is part of the phycobilisome of cyanobacteria. Its monomer carries ...
Photosynthetic organisms have found various smart ways to cope with unexpected changes in light cond...
Chlorophyll, the essential part of the photosynthetic reactien cen-ter, absorbs light between 45D an...
Phycobilisomes in cyanobacteria and red algae are large protein complexes that absorb light and tran...