Pre_GI: SWBIT SVG BLASTP

Query: NC_010407:3174470 Clavibacter michiganensis subsp. sepedonicus chromosome, complete

Lineage: Clavibacter michiganensis; Clavibacter; Microbacteriaceae; Actinomycetales; Actinobacteria; Bacteria

General Information: Causative agent of bacterial ring rot. Isolated from infected potato. This organism was first described and classified in 1914 as "Bacterium sepedonicus" and is considered a major plant pathogen. It is a phytopathogenic actinomycete that causes wilt and tuber rot in potato, which is a plant vascular disease with very high bacterial titers. Pathogenicity is believed to be associated with the presence of two plasmids, pCSL1 and pCSL2. This species is subdivided into five subspecies: michiganensis, sepedonicus, nebraskensis, tesselarius and insidiosus each of which infects specific hosts: tomato, potato, corn, wheat and alfalfa, respectively. Members of the Clavibacter genus are known to produce antimicrobial compounds.

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BLASTP Alignment.txt

Subject: NC_006570:141966 Francisella tularensis subsp. tularensis Schu 4, complete genome

Lineage: Francisella tularensis; Francisella; Francisellaceae; Thiotrichales; Proteobacteria; Bacteria

General Information: This subspecies is virulent in humans, and the strain is a clinical isolate that is also virulent in an animal model. Originally isolated from a human case of tularemia in 1951. There are a large number of insertion sequences including a mariner element, which is a transposon typically found in eukaryotes and is the first instance of this element to be found in a microbe, which may have acquired it during transit through one of the insect vectors. Causative agent of tularemia. This organism was first identified by Edward Francis as the causative agent of a plague-like illness that affected squirrels in Tulare county in California in the early part of the 20th century. The organism now bears his name. The disease, which has been noted throughout recorded history, can be transmitted to humans by infected ticks or deerflies, infected meat, or by aerosol, and thus is a potential bioterrorism agent. This organism has a high infectivity rate, and can invade phagocytic and nonphagocytic cells, multiplying rapidly. Once within a macrophage, the organism can escape the phagosome and live in the cytosol. It is an aquatic organism, and can be found living inside protozoans, similar to what is observed with Legionella.