Recent studies have expanded the phylum Chlorobi, demonstrating that the green sulfur bacteria (GSB), the original cultured representatives of the phylum, are a part of a broader lineage whose members have more diverse metabolic capabilities that overlap with members of the phylum Bacteroidetes. The 16S rRNA gene of an uncultivated clone, OPB56, distantly related to the phyla Chlorobi and Bacteroidetes, was recovered from Obsidian Pool in Yellowstone National Park; however, the detailed phylogeny and function of OPB56 and related clones have remained unknown. Culturing of thermophilic bacterial consortia from compost by adaptation to grow on ionic-liquid pretreated switchgrass provided a consortium in which one of the most abundant members,...
Candidate bacterial phylum BRC1 has been identified in a broad range of mostly organic-rich oxic and...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
Recent studies have expanded the phylum Chlorobi, demonstrating that the green sulfur bacteria (GSB)...
Recent studies have expanded the phylum Chlorobi, demonstrating that the green sulfur bacteria (GSB)...
Prior to the recent discovery of Ignavibacterium album (I. album), anaerobic photoautotrophic green ...
Abstract Background The Bacteroidetes and Chlorobi species constitute two main groups of the Bacteri...
Pulsed-field gel electrophoresis was used to characterize the genomes of 15 Chlorobium strains. An a...
Environments rich in sulfur compounds (sulfidic) are common in the ocean, and the ability to gain en...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
UnlabelledCultivation-independent surveys of microbial diversity have revealed many bacterial phyla ...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
ABSTRACT Cultivation-independent surveys of microbial diversity have revealed many bacterial phyla t...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
Candidate bacterial phylum BRC1 has been identified in a broad range of mostly organic-rich oxic and...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
Recent studies have expanded the phylum Chlorobi, demonstrating that the green sulfur bacteria (GSB)...
Recent studies have expanded the phylum Chlorobi, demonstrating that the green sulfur bacteria (GSB)...
Prior to the recent discovery of Ignavibacterium album (I. album), anaerobic photoautotrophic green ...
Abstract Background The Bacteroidetes and Chlorobi species constitute two main groups of the Bacteri...
Pulsed-field gel electrophoresis was used to characterize the genomes of 15 Chlorobium strains. An a...
Environments rich in sulfur compounds (sulfidic) are common in the ocean, and the ability to gain en...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
UnlabelledCultivation-independent surveys of microbial diversity have revealed many bacterial phyla ...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
ABSTRACT Cultivation-independent surveys of microbial diversity have revealed many bacterial phyla t...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
Candidate bacterial phylum BRC1 has been identified in a broad range of mostly organic-rich oxic and...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...
In this study we present evidence for a novel, thermophilic bacterium with dissimilatory sulfur meta...