Chlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sulfur, and thiosulfate for photosynthetic growth. As other anoxygenic green photosynthetic bacteria, Cba tepidum synthesizes bacteriochlorophylls for the assembly of a large light-harvesting antenna structure, the chlorosome. Chlorosomes are sac-like structures that are connected to the reaction centers in the cytoplasmic membrane through the BChl α-containing Fenna-Matthews-Olson protein. Most components of the photosynthetic machinery are known on a biophysical level, however, the structural integration of light harvesting with charge separation is still not fully understood. Despite over two decades of research, gaps in our understanding of cellular...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Chlorosomes are sac-like, light-harvesting organelles that characteristically contain very large num...
AbstractIn photosynthetic green sulfur bacteria excitation energy is transferred from large bacterio...
Chlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sulfur, and...
AbstractChlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sul...
Chlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sulfur, and...
AbstractChlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sul...
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...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
The photosynthetic apparatus of green sulfur bacteria (GSB) contains a peripheral antenna chlorosome...
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...
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 sac-like, light-harvesting organelles that characteristically contain very large num...
AbstractIn photosynthetic green sulfur bacteria excitation energy is transferred from large bacterio...
Chlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sulfur, and...
AbstractChlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sul...
Chlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sulfur, and...
AbstractChlorobaculum (Cba) tepidum is a green sulfur bacterium that oxidizes sulfide, elemental sul...
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...
AbstractChlorosomes of green photosynthetic bacteria constitute the most efficient light harvesting ...
The photosynthetic apparatus of green sulfur bacteria (GSB) contains a peripheral antenna chlorosome...
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...
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 sac-like, light-harvesting organelles that characteristically contain very large num...
AbstractIn photosynthetic green sulfur bacteria excitation energy is transferred from large bacterio...