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The genome and variation of Bacillus anthracis
Authors:Paul Keim  Jeffrey M Gruendike  Alexandra M Klevytska  James M Schupp  Jean Challacombe  Richard Okinaka
Institution:1. The Microbial Genetics and Genomics Center, Northern Arizona University, Flagstaff AZ 86011-4073, USA;2. Division of Pathogen Genomics, The Translational Genomics Research Institute, 3051 W Shamrell Blvd, Flagstaff AZ 86001 USA;3. Genome Science/Joint Genome Institute (B-6), Bioscience Division MS M888, Los Alamos National Laboratory, Los Alamos, NM 87545, USA;1. Dept. of Biomedical SciencesUniversità di Padova, Via Trieste, 75 Padova, I-35121, Italy (Ph: +39 049 827 6058);2. Toxines et Pathogénies Bactériennes, Institut Pasteur, 28 Rue du Dr Roux, 75724-PARIS cedex 15, France
Abstract:The Bacillus anthracis genome reflects its close genetic ties to Bacillus cereus and Bacillus thuringiensis but has been shaped by its own unique biology and evolutionary forces. The genome is comprised of a chromosome and two large virulence plasmids, pXO1 and pXO2. The chromosome is mostly co-linear among B. anthracis strains and even with the closest near neighbor strains. An exception to this pattern has been observed in a large inversion in an attenuated strain suggesting that chromosome co-linearity is important to the natural biology of this pathogen. In general, there are few polymorphic nucleotides among B. anthracis strains reflecting the short evolutionary time since its derivation from a B. cereus-like ancestor. The exceptions to this lack of diversity are the variable number tandem repeat (VNTR) loci that exist in genic and non genic regions of the chromosome and both plasmids. Their variation is associated with high mutability that is driven by rapid insertion and deletion of the repeats within an array. A notable example is found in the vrrC locus which is homologous to known DNA translocase genes from other bacteria.
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