ABSTRACT Chlorosomes are themain light harvesting complexes of green photosynthetic bacteria. Recently, a lamellar model was proposed for the arrangement of pigment aggregates inChlorobium tepidum chlorosomes, which contain bacteriochlorophyll (BChl) c as the main pigment. Here we demonstrate that the lamellar organization is also found in chlorosomes from two brown-colored species (Chl. phaeovibrioides and Chl. phaeobacteroides) containing BChl e as the main pigment. This suggests that the lamellar model is universal among green sulfur bacteria. In contrast to green-colored Chl. tepidum, chlorosomes from the brown-colored species often contain domains of lamellar aggregates that may help them to survive in extremely low light conditions. W...
Chlorosomes are sac-like, light-harvesting organelles that characteristically contain very large num...
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...
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...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
AbstractChlorosomes are specialized compartments that constitute the main light harvesting system of...
The organization of bacteriochlorophyll c (BChl c) molecules was studied in normal and carotenoid-de...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Chlorosomes are sac-like, light-harvesting organelles that characteristically contain very large num...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
The organization of bacteriochlorophyll c (BChl c) molecules was studied in normal and carotenoid-de...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
AbstractChlorosomes, the main antenna complexes of green photosynthetic bacteria, were isolated from...
Chlorosomes are sac-like, light-harvesting organelles that characteristically contain very large num...
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...
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...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
AbstractChlorosomes are specialized compartments that constitute the main light harvesting system of...
The organization of bacteriochlorophyll c (BChl c) molecules was studied in normal and carotenoid-de...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Chlorosomes are sac-like, light-harvesting organelles that characteristically contain very large num...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
The organization of bacteriochlorophyll c (BChl c) molecules was studied in normal and carotenoid-de...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
AbstractChlorosomes, the main antenna complexes of green photosynthetic bacteria, were isolated from...
Chlorosomes are sac-like, light-harvesting organelles that characteristically contain very large num...
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...