AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting complexes found in nature. In addition, the chlorosome is the only known photosynthetic system where the majority of pigments (BChl) is not organized in pigment-protein complexes but instead is assembled into aggregates. Because of the unusual organization, the chlorosome structure has not been resolved and only models, in which BChl pigments were organized into large rods, were proposed on the basis of freeze-fracture electron microscopy and spectroscopic constraints. We have obtained the first high-resolution images of chlorosomes from the green sulfur bacterium Chlorobium tepidum by cryoelectron microscopy. Cryoelectron microscopy images r...
AbstractThe bacteriochlorophyll (Bchl) c content and organization was determined for Chlorobium (Cb....
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
ABSTRACT Chlorosomes are themain light harvesting complexes of green photosynthetic bacteria. Recent...
AbstractChlorosomes, the main antenna complexes of green photosynthetic bacteria, were isolated from...
Chlorosomes are the main light harvesting complexes of green photosynthetic bacteria. Recently, a la...
Chlorosomes are the main light harvesting complexes of green photosynthetic bacteria. Recently, a la...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
AbstractIntact chlorosomes of Chlorobium tepidum were embedded in amorphous ice layers and examined ...
AbstractThe bacteriochlorophyll (Bchl) c content and organization was determined for Chlorobium (Cb....
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
ABSTRACT Chlorosomes are themain light harvesting complexes of green photosynthetic bacteria. Recent...
AbstractChlorosomes, the main antenna complexes of green photosynthetic bacteria, were isolated from...
Chlorosomes are the main light harvesting complexes of green photosynthetic bacteria. Recently, a la...
Chlorosomes are the main light harvesting complexes of green photosynthetic bacteria. Recently, a la...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
AbstractIntact chlorosomes of Chlorobium tepidum were embedded in amorphous ice layers and examined ...
AbstractThe bacteriochlorophyll (Bchl) c content and organization was determined for Chlorobium (Cb....
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...