Pre_GI: SWBIT SVG BLASTN

Query: NC_002932:2142000 Chlorobium tepidum TLS, complete genome

Lineage: Chlorobaculum tepidum; Chlorobaculum; Chlorobiaceae; Chlorobiales; Chlorobi; Bacteria

General Information: This green-sulfur bacterium is a thermophile and was isolated from a New Zealand high-sulfide hot spring. Photosynthetic thermophile. Chlorobium tepidum is a member of the green-sulfur bacteria. It has been suggested that the green-sulfur bacteria were among the first photosynthetic organisms since they are anaerobically photosynthetic and may have arisen early in the Earth's history when there was a limited amount of oxygen present. This organism utilizes a novel photosynthetic system, and harvests light energy using an unusual organelle, the chlorosome, which contains an aggregate of light-harvesting centers surrounded by a protein-stabilized galactolipid monolayer that lies at the inner surface of the cytoplasmic membrane. Unlike many other photosynthetic organisms, the green-sulfur bacteria do not produce oxygen and tolerate only low levels of the molecule. This organism also fixes carbon dioxide via a reverse tricarboxylic acid cycle, using electrons derived from hydrogen or reduced sulfur to drive the reaction, instead of via the Calvin cycle like many other photosynthetic organisms.

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Subject: NC_015312:1 Pseudonocardia dioxanivorans CB1190 chromosome, complete genome

Lineage: Pseudonocardia dioxanivorans; Pseudonocardia; Pseudonocardiaceae; Actinomycetales; Actinobacteria; Bacteria

General Information: Country: USA; Environment: Sludge, Fresh water; Isolation: Industrial sludge contaminated; Temp: Mesophile; Temp: 30C. Pseudonocardia members are abundant in diverse environments, and are known to degrade a variety of pollutants. These bacteria are also important in biocatalysis applications and in the production of antibiotics. Pseudonocardia dioxanivorans was first isolated from 1,4-dioxane containing sludge. This organism is able to grow using 1,4-dioxane, a toxic compound used as an industrial solvent, as the sole carbon source.