Pre_GI: SWBIT SVG BLASTP

Query: NC_007794:2839239 Novosphingobium aromaticivorans DSM 12444, complete genome

Lineage: Novosphingobium aromaticivorans; Novosphingobium; Sphingomonadaceae; Sphingomonadales; Proteobacteria; Bacteria

General Information: This strain, also known as F199, was isolated from a sample obtained at a depth of 410 m from a borehole sample that was drilled at the Savannah River Site in South Carolina, USA. Aromatic hydrocarbon-degrading bacterium. This organism is unusual in that it has glycosphingolipid in the cell envelope instead of the lipopolysaccharide found in most other gram negative organisms. It is typically isolated from a wide range of environmental sites.

- Sequence; - BLASTP hit: hover for score (Low score = Light, High score = Dark);
- hypothetical protein; - cds: hover for description

BLASTP Alignment.txt

Subject: NC_004578:3849835 Pseudomonas syringae pv. tomato str. DC3000, complete genome

Lineage: Pseudomonas syringae group genomosp. 3; Pseudomonas; Pseudomonadaceae; Pseudomonadales; Proteobacteria; Bacteria

General Information: While pathogenic on Arabidopsis thaliana, it is mainly characterized as causing bacterial speck disease on tomato plants, which has a large economic impact. This organism is mainly endophytic and is a poor colonizes of plant surfaces but can multiply within the host. Bacteria belonging to the Pseudomonas group are common inhabitants of soil and water and can also be found on the surfaces of plants and animals. Pseudomonas bacteria are found in nature in a biofilm or in planktonic form. Pseudomonas bacteria are renowned for their metabolic versatility as they can grow under a variety of growth conditions and do not need any organic growth factors. This species includes many plant pathogens of important crops, which makes it a model organism in plant pathology. Its natural environment is on the surface of plant leaves and it can withstand various stressful conditions, like rain, wind, UV radiation and drought. It can colonize plants in a non-pathogenic state and can rapidly take advantage of changing environmental conditions to induce disease in susceptible plants by shifting gene expression patterns.