Pre_GI: SWBIT SVG BLASTP

Query: NC_017265:1765399 Yersinia pestis biovar Medievalis str. Harbin 35 chromosome,

Lineage: Yersinia pestis; Yersinia; Enterobacteriaceae; Enterobacteriales; Proteobacteria; Bacteria

General Information: Specific virulence factors are encoded within pathogenicity islands (PAIs) that are required for the invasive phenotype associated with Yersinia infections. One key virulence plasmid contained by the three human-specific pathogens is pCD1/pYv, which encodes a type III secretion system for the delivery of virulence proteins that contribute to internalization into the host cell. It is the causative agent of plague (bubonic and pulmonary) a devastating disease which has killed millions worldwide. The organism can be transmitted from rats to humans through the bite of an infected flea or from human-to-human through the air during widespread infection. Yersinia pestis is an extremely pathogenic organism that requires very few numbers in order to cause disease, and is often lethal if left untreated. The organism is enteroinvasive, and can survive and propagate in macrophages prior to spreading systemically throughout the host. Yersinia pestis consists of three biotypes or serovars, Antiqua, Mediavalis, and Orientalis, that are associated with three major pandemics throughout human history. pMT1 encodes a protein, murine toxin, that aids rat-to-human transmission by enhancing survival of the organism in the flea midgut. Yersinia pestis also contains a PAI on the chromosome that is similar to the SPI-2 PAI from Salmonella that allows intracellular survival in the organism.

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BLASTP Alignment.txt

Subject: NC_014824:133065 Ruminococcus albus 7 plasmid pRUMAL01, complete sequence

Lineage: Ruminococcus albus; Ruminococcus; Ruminococcaceae; Clostridiales; Firmicutes; Bacteria

General Information: Environment: Host; Temp: Mesophile; Temp: 40C. Ruminococcus albus 7 is a common rumen bacterium. This organism is able to degrade cellulose and also produces an antimicrobial compound that prevents the growth of Ruminococcus flavefaciens. The bacterium requires phenylacetic and phenylpropionic acids for maximal growth. The organism produces cellulosomes at the cell surface that are multimeric protein complexes that contain scaffolding proteins and degradative enzymes. Understanding the metabolism of plant polysaccharides may enable scientists to improve the productivity of ruminant organisms such as cattle.