Filamentous sulphide-oxidizing Beggiatoa spp. often occur in large numbers in the coastal seabed without forming visible mats on the sediment surface. We studied the diversity, population structure and the nitrate-storing capability of such bacteria in the Danish Limfjorden and the German Wadden Sea. Their distribution was compared to the vertical gradients of O2, NO3 - and H2S as measured by microsensors. The main Beggiatoa spp. populations occurred in a 0.5-3 cm thick intermediate zone, below the depth of oxygen and nitrate penetration but above the zone of free sulphide. The Beggiatoa spp. filaments were found to store nitrate, presumably in liquid vacuoles up to a concentration of 370 mM NO3 -, similar to the related large marine sulphu...
Beggiatoa species are filamentous sulfide-oxidizing bacteria belonging to the family Beggiatoaceae t...
Hydrothermal sediments in the Guaymas Basin are covered by microbial mats that are dominated by nitr...
Beggiatoa inhabit the microoxic zone in sediments. They oxidize reduced sulfur compounds such as sul...
Filamentous sulphide‐oxidizing Beggiatoa spp. often occur in large numbers in the coastal seabed wit...
The aim of this study was to investigate the supposed vertical diel migration and the accompanying p...
In three eutrophic coastal environments, the Chilean coast, the Namibian coast, and the Danish Limfj...
The ecological niche of nitrate-storing Beggiatoa, and their contribution to the removal of sulfide ...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
Fjord sediments on the west coast of the arctic archipelago Svalbard were surveyed to understand whe...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
Large filamentous sulfide-oxidizing bacteria are capable of forming huge microbial mats at the oxic-...
Mat-forming sulfide-oxidizing bacteria are intriguing, diverse, highly adapted microorganisms with i...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
In three eutrophic coastal environments, the Chilean coast, the Namibian coast, and the Danish Limfj...
Beggiatoa species are filamentous sulfide-oxidizing bacteria belonging to the family Beggiatoaceae t...
Hydrothermal sediments in the Guaymas Basin are covered by microbial mats that are dominated by nitr...
Beggiatoa inhabit the microoxic zone in sediments. They oxidize reduced sulfur compounds such as sul...
Filamentous sulphide‐oxidizing Beggiatoa spp. often occur in large numbers in the coastal seabed wit...
The aim of this study was to investigate the supposed vertical diel migration and the accompanying p...
In three eutrophic coastal environments, the Chilean coast, the Namibian coast, and the Danish Limfj...
The ecological niche of nitrate-storing Beggiatoa, and their contribution to the removal of sulfide ...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
Fjord sediments on the west coast of the arctic archipelago Svalbard were surveyed to understand whe...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
Large filamentous sulfide-oxidizing bacteria are capable of forming huge microbial mats at the oxic-...
Mat-forming sulfide-oxidizing bacteria are intriguing, diverse, highly adapted microorganisms with i...
Filamentous large sulfur-oxidizing bacteria (FLSB) of the family Beggiatoaceae are globally distribu...
Marine sediments are frequently covered by mats of the filamentous Beggiatoa and other large nitrate...
In three eutrophic coastal environments, the Chilean coast, the Namibian coast, and the Danish Limfj...
Beggiatoa species are filamentous sulfide-oxidizing bacteria belonging to the family Beggiatoaceae t...
Hydrothermal sediments in the Guaymas Basin are covered by microbial mats that are dominated by nitr...
Beggiatoa inhabit the microoxic zone in sediments. They oxidize reduced sulfur compounds such as sul...