Pre_GI: SWBIT SVG BLASTP

Query: NC_014363:114239 Olsenella uli DSM 7084 chromosome, complete genome

Lineage: Olsenella uli; Olsenella; Coriobacteriaceae; Coriobacteriales; Actinobacteria; Bacteria

General Information: Isolation: Human gingival crevice; Temp: Mesophile; Temp: 37C. The bacteria are nonmotile, Gram-positive rods that occur singly, in pairs, and in short chains; the central part of the cell may swell particularly when grown on solid medium. This strain is microaerotolerant to anaerobic and grows optimally at 37 degrees Celsius. Olsenella uli (formerly Lactobacillus uli) has been isolated from human gingival crevices and periodontal pockets.

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BLASTP Alignment.txt

Subject: NC_000917:1778173 Archaeoglobus fulgidus DSM 4304, complete genome

Lineage: Archaeoglobus fulgidus; Archaeoglobus; Archaeoglobaceae; Archaeoglobales; Euryarchaeota; Archaea

General Information: This is the type strain (DSM 4304) of the Archaeoglobales, and was isolated from a geothermally heated sea floor at Vulcano Island, Italy. Doubling time is four hours under optimal conditions. The organism is an autotrophic or organotrophic sulfate/sulfite respirer. An additional distinguishing characteristic is blue-green fluorescence at 420 nm. This bacterium is the first sulfur-metabolizing organism to have its genome sequence determined. Growth by sulfate reduction is restricted to relatively few groups of prokaryotes; all but one of these are Eubacteria, the exception being the archaeal sulfate reducers in the Archaeoglobales. These organisms are unique in that they are only distantly related to other bacterial sulfate reducers, and because they can grow at extremely high temperatures. The known Archaeoglobales are strict anaerobes, most of which are hyperthermophilic marine sulfate reducers found in hydrothermal environments. High-temperature sulfate reduction by Archaeoglobus species contributes to deep subsurface oil-well 'souring' by iron sulfide, which causes corrosion of iron and steel in oil-and gas-processing systems.