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Complete genome sequence of the industrial bacterium Bacillus licheniformis and comparisons with closely related Bacillus species

Authors :
Rey, Michael
Ramaiya, Preethi
Nelson, Beth
Brody-Karpin, Shari
Zaretsky, Elizabeth
Tang, Maria
de Leon, Alfredo
Xiang, Henry
Gusti, Veronica
Clausen, Ib Groth
Olsen, Peter
Rasmussen, Michael
Andersen, Jens
Jørgensen, Per
Larsen, Thomas
Sorokin, Alexei
Bolotin, Alexander
Lapidus, Alla
Galleron, Nathalie
Ehrlich, S Dusko
Berka, Randy
Source :
Genome Biology; September 2004, Vol. 5 Issue: 10 p77
Publication Year :
2004

Abstract

Background Bacillus licheniformis is a Gram-positive, spore-forming soil bacterium that is used in the biotechnology industry to manufacture enzymes, antibiotics, biochemicals and consumer products. This species is closely related to the well studied model organism Bacillus subtilis, and produces an assortment of extracellular enzymes that may contribute to nutrient cycling in nature.Results We determined the complete nucleotide sequence of the B. licheniformis ATCC 14580 genome which comprises a circular chromosome of 4,222,336 base-pairs (bp) containing 4,208 predicted protein-coding genes with an average size of 873 bp, seven rRNA operons, and 72 tRNA genes. The B. licheniformis chromosome contains large regions that are colinear with the genomes of B. subtilis and Bacillus halodurans, and approximately 80% of the predicted B. licheniformis coding sequences have B. subtilis orthologs.Conclusions Despite the unmistakable organizational similarities between the B. licheniformis and B. subtilis genomes, there are notable differences in the numbers and locations of prophages, transposable elements and a number of extracellular enzymes and secondary metabolic pathway operons that distinguish these species. Differences include a region of more than 80 kilobases (kb) that comprises a cluster of polyketide synthase genes and a second operon of 38 kb encoding plipastatin synthase enzymes that are absent in the B. licheniformis genome. The availability of a completed genome sequence for B. licheniformis should facilitate the design and construction of improved industrial strains and allow for comparative genomics and evolutionary studies within this group of Bacillaceae.

Details

Language :
English
ISSN :
14747596 and 1474760X
Volume :
5
Issue :
10
Database :
Supplemental Index
Journal :
Genome Biology
Publication Type :
Periodical
Accession number :
ejs6786609