Pre_GI: SWBIT SVG BLASTN

Query: NC_009004:2477220 Lactococcus lactis subsp. cremoris MG1363, complete genome

Lineage: Lactococcus lactis; Lactococcus; Streptococcaceae; Lactobacillales; Firmicutes; Bacteria

General Information: Microorganism used in cheese production. This microbe is a member of the lactic acid bacteria and produces lactic acid from sugars. It is found in many environments including plant and animal habitats. Lactococcus lactis is used as a starter culture for the production of cheese products (such as cheddar) and in milk fermentations and, as such, is one of the most important microbes in the food industry. The degradation of casein, acidification by lactic acid, and production of flavor compounds, processes that are caused by the bacteria, contribute to the final product.

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

BLASTN Alignment.txt

Subject: NC_016047:637778 Bacillus subtilis subsp. spizizenii TU-B-10 chromosome, complete

Lineage: Bacillus subtilis; Bacillus; Bacillaceae; Bacillales; Firmicutes; Bacteria

General Information: This organism was one of the first bacteria studied, and was named Vibrio subtilis in 1835 and renamed Bacillus subtilis in 1872. It is one of the most well characterized bacterial organisms, and is a model system for cell differentiation and development. This soil bacterium can divide asymmetrically, producing an endospore that is resistant to environmental factors such as heat, acid, and salt, and which can persist in the environment for long periods of time. The endospore is formed at times of nutritional stress, allowing the organism to persist in the environment until conditions become favorable. Prior to the decision to produce the spore the bacterium might become motile, through the production of flagella, and also take up DNA from the environment through the competence system. The sporulation process is complex and involves the coordinated regulation of hundreds of genes in the genome. This initial step results in the coordinated asymmetric cellular division and endospore formation through multiple stages that produces a single spore from the mother cell.