Pre_GI: SWBIT SVG BLASTP

Query: NC_013410:2586500 Fibrobacter succinogenes subsp. succinogenes S85 chromosome,

Lineage: Fibrobacter succinogenes; Fibrobacter; Fibrobacteraceae; Fibrobacterales; Fibrobacteres; Bacteria

General Information: Temp: Mesophile; Temp: 37C; Habitat: Host. Cellulolytic rumen bacterium. This bacterium is one of the three most predominant cellulolytic organisms in the rumen. Since cellulose is one of the most abundant carbohydrates on the planet, this organism is, therefore, an important part of the global carbon biogeochemical cycle, converting the mass of fixed carbon generated by photosynthetic organisms back to products that eventually end up as carbon dioxide. Increasing cellulose degradation is an important goal in industrial processes. This organism is highly specialized for cellulose degradation, and is only capable of utilizing cellulose and cellulolytic degradation products as carbon sources. Access to cellulose is a rate-liming step in degradation, and the cellulolytic organisms have devised a number of mechanisms for improving access to this insoluble substrate, one of which is the production of surface-localized cellulases. The active enzymes are cell wall associated, but the presence of cellulosomes, large multiprotein cellulase complexes, has not been detected in this organism. Adherence is another method used to promote cellulose degradation, and this organism produces an extracellular matrix of glycoprotein glycocalyx which allows attachment to insoluble cellulose.

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Subject: NC_007760:4055860 Anaeromyxobacter dehalogenans 2CP-C, complete genome

Lineage: Anaeromyxobacter dehalogenans; Anaeromyxobacter; Myxococcaceae; Myxococcales; Proteobacteria; Bacteria

General Information: This strain differs from other isolates based on the combination of its ability to use 2,5-dichlorophenol and its inability to use nitrate as a strong electron acceptor. It can also dechlorinate 2,4-dichlorophenol and 2,4,6-trichlorophenol much faster than other isolates. Can dehalogenate chlorinated phenols. This anaerobic species was originally isolated by enrichment and isolation of single plate-grown colonies, and was the first pure culture of myxobacteria able to grow anaerobically.