Pre_GI: SWBIT SVG BLASTN

Query: NC_015186:2197236 Acidiphilium multivorum AIU301, complete genome

Lineage: Acidiphilium multivorum; Acidiphilium; Acetobacteraceae; Rhodospirillales; Proteobacteria; Bacteria

General Information: Thiosulfate oxidation. Acidophilic, aerobic, anoxygenic, phototrophic, Gram-negative bacterium isolated from pyritic acid mine drainage. A.multivorum has high ability of resistance to various metals under acidic condition, and require high acidity for growth. It exhibits tolerance towards some heavy metal ions like nickel, zinc, cadmium and copper, and resistance to arsenate and arsenite.

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BLASTN Alignment.txt

Subject: NC_003062:2506959 Agrobacterium tumefaciens str. C58 chromosome circular, complete

Lineage: Agrobacterium fabrum; Agrobacterium; Rhizobiaceae; Rhizobiales; Proteobacteria; Bacteria

General Information: This strain is a biovar 1 nopaline-producing strain originally isolated from a cherry tree tumor. Strains of Agrobacterium are classified in three biovars based on their utilisation of different carbohydrates and other biochemical tests. The differences between biovars are determined by genes on the single circle of chromosomal DNA. Biovar differences are not particularly relevant to the pathogenicity of A. tumefaciens, except in one respect: biovar 3 is found worldwide as the pathogen of gravevines. This species causes crown gall disease of a wide range of dicotyledonous (broad-leaved) plants, especially members of the rose family such as apple, pear, peach, cherry, almond, raspberry and roses. Because of the way that it infects other organisms, this bacterium has been used as a tool in plant breeding. Any desired genes, such as insecticidal toxin genes or herbicide-resistance genes, can be engineered into the bacterial DNA, and then inserted into the plant genome. This process shortens the conventional plant breeding process, and allows entirely new (non-plant) genes to be engineered into crops.