Pre_GI: SWBIT SVG BLASTP

Query: NC_007793:574580 Staphylococcus aureus subsp. aureus USA300, complete genome

Lineage: Staphylococcus aureus; Staphylococcus; Staphylococcaceae; Bacillales; Firmicutes; Bacteria

General Information: USA300, a methicillin resistant strain of Staphylococcus aureus, has been implicated in epidemiologically unassociated outbreaks of skin and soft tissue infections among healthy individuals in at least 21 U.S. states, Canada and Europe. USA300 is also noted for its strong association with unusually invasive disease, including severe septicemia, necrotizing pneumonia and necrotizing fasciitis. Staphylcocci are generally found inhabiting the skin and mucous membranes of mammals and birds. Some members of this genus can be found as human commensals and these are generally believed to have the greatest pathogenic potential in opportunistic infections. This organism is a major cause of nosocomial (hospital-acquired) and community-acquired infections. S. aureus continues to be a major cause of mortality and is responsible for a variety of infections including, boils, furuncles, styes, impetigo and other superficial skin infections in humans. Also known to cause more serious infections particularly in the chronically ill or immunocompromised. The ability to cause invasive disease is associated with persistance in the nasal cavity of a host.

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BLASTP Alignment.txt

Subject: NC_006055:689956 Mesoplasma florum L1, complete genome

Lineage: Mesoplasma florum; Mesoplasma; Entomoplasmataceae; Entomoplasmatales; Tenericutes; Bacteria

General Information: Isolated from the surface of the lemon tree flower. Bacterium which lacks a cell wall. This organism is a member of the Mollicutes which are bacteria that lack a cell wall and are obligately parasitic on a number of organisms including mammals, insects, and plants. Mesoplasma florum is a nonpathogenic organism and is nonmotile and is not closely related to Mycoplasma genitalium and Mycoplasma pneumoniae. Unlike other Mollicutes, this species does not require sterol to be supplied in the media for growth.