Pre_GI: SWBIT SVG BLASTN

Query: NC_012207:1681971 Mycobacterium bovis BCG str. Tokyo 172, complete genome

Lineage: Mycobacterium bovis; Mycobacterium; Mycobacteriaceae; Actinomycetales; Actinobacteria; Bacteria

General Information: Used for the production of BCG vaccine in Japan. Causative agent of classic bovine tuberculosis. This bacterium is the causative agent of classic bovine tuberculosis, but it can also cause the disease in humans, especially if contaminated milk is consumed without prior pasteurization. The Mycobacterium bovis complex is a diverse group of species, serovars and morphotypes that cause tuberculosis-like diseases in animals and humans. Pasteurization of milk is a major preventitive factor in transmission of bovine tuberculosis to humans. However, spreading the disease through milk and dairy products is still a concern in underdeveloped countries where pasteurization is not practiced. The pathology in cows is similar to the pathology of Mycobacterium tuberculosis in humans, with pulmonary TB leading to chronic debilitation, coughing, and further systemic spread to other organs. In addition, 1 to 2% of infected cows develop mycobacterial mastitis that results in shedding of the bacteria into the milk.

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BLASTN Alignment.txt

Subject: NC_008148:2498000 Rubrobacter xylanophilus DSM 9941, complete genome

Lineage: Rubrobacter xylanophilus; Rubrobacter; Rubrobacteraceae; Rubrobacterales; Actinobacteria; Bacteria

General Information: Cellulose-degrading bacterium. This genus contains two species: Rubrobacter radiotolerans and Rubrobacter xylanophilus. These two species represent the oldest lineage (deepest branch) of the Actinobacteria and are distantly related to Mycobacteria and Streptomycetes. Both species are thermophilic and exhibit high tolerance to radiation. Very little research has been done on these organisms and little is known other than their taxonomic characterization. Rubrobacter xylanophilus was isolated from a thermally polluted industrial runoff in the United Kingdom. Some strains of this species are capable of degrading hemicellulose and xylan (polymers of plant origin), and could play a significant role in the degradation of these compounds in the wood and paper industry as well as in the environment.