Pre_GI: SWBIT SVG BLASTP

Query: NC_012416:4973 Wolbachia sp. wRi, complete genome

Lineage: Wolbachia; Wolbachia; Anaplasmataceae; Rickettsiales; Proteobacteria; Bacteria

General Information: Endosymbiont. Obligate intracellular bacterium infects around 20% of all insect species. Naturally infects Drosophila simulans and induces almost complete cytoplasmic incompatibility in its host. Wolbachia sp. subsp. Drosophila simulans (strain wRi) is an intracellular proteobacterium that infect insects as well as isopods, spiders, scorpions, mites, and filarial nematodes. It is maternally inherited and induces reproductive alterations of insect populations by male killing, feminization, parthenogenesis, or cytoplasmic incompatibility. In insect populations, Wolbachia sp. induce reproductive manipulations to enhance their own spreading. The most frequently observed reproductive abnormality is cytoplasmic incompatibility, where uninfected females are unable to produce offspring with infected males, whereas infected females can produce offspring with both infected and uninfected males, thus creating a reproductive advantage for infected females. Other spectacular effects of Wolbachia sp. infections are male embryo killing, feminization, and parthenogenesis induction.

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BLASTP Alignment.txt

Subject: NC_007797:1451804 Anaplasma phagocytophilum HZ, complete genome

Lineage: Anaplasma phagocytophilum; Anaplasma; Anaplasmataceae; Rickettsiales; Proteobacteria; Bacteria

General Information: Isolated from a patient in New York, USA, in 1995. This organism is a tick-borne (Ixodesspp.) obligate intracellular pathogen that infects humans and causes human granulocytic anaplasmosis as well as infecting several other types of animals. This organism produces a number of pathogenic factors that aid virulence. These include specific adhesins for neutrophils, virulence factors that inhibit both phagosome-lysozome fusion and production of reactive oxygen species that would normally kill the bacterium. The bacterium also inhibits programmed cell death of the neutrophil (apoptosis) and induces expression of interleukin-8, which causes neutrophil chemotaxis, thereby increasing the spread of the bacterium throughout the host organism.