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Unexpected Relations of Historical Anthrax Strain

Overview
Journal mBio
Specialty Microbiology
Date 2017 Apr 27
PMID 28442608
Citations 4
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Abstract

In 1998, it was claimed that an 80-year-old glass tube intentionally filled with and embedded in a sugar lump as a WWI biological weapon still contained viable spores. Today, genome sequencing of three colonies isolated in 1998 and subjected to phylogenetic analysis surprisingly identified a well-known reference strain isolated in the United States in 1981, pointing to accidental laboratory contamination. Next-generation sequencing and subsequent phylogenetic analyses are useful and reliable tools for the classification of recent and historical samples. The reliability of sequences obtained and bioinformatic algorithms has increased in recent years, and research has uncovered the identity of a presumed bioweapon agent as a contaminant.

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References
1.
Keim P, Price L, Klevytska A, Smith K, Schupp J, Okinaka R . Multiple-locus variable-number tandem repeat analysis reveals genetic relationships within Bacillus anthracis. J Bacteriol. 2000; 182(10):2928-36. PMC: 102004. DOI: 10.1128/JB.182.10.2928-2936.2000. View

2.
Read T, Salzberg S, Pop M, Shumway M, Umayam L, Jiang L . Comparative genome sequencing for discovery of novel polymorphisms in Bacillus anthracis. Science. 2002; 296(5575):2028-33. DOI: 10.1126/science.1071837. View

3.
Read T, Peterson S, Tourasse N, Baillie L, Paulsen I, Nelson K . The genome sequence of Bacillus anthracis Ames and comparison to closely related bacteria. Nature. 2003; 423(6935):81-6. DOI: 10.1038/nature01586. View

4.
Lista F, Faggioni G, Valjevac S, Ciammaruconi A, Vaissaire J, Le Doujet C . Genotyping of Bacillus anthracis strains based on automated capillary 25-loci multiple locus variable-number tandem repeats analysis. BMC Microbiol. 2006; 6:33. PMC: 1479350. DOI: 10.1186/1471-2180-6-33. View

5.
Sue D, Marston C, Hoffmaster A, Wilkins P . Genetic diversity in a Bacillus anthracis historical collection (1954 to 1988). J Clin Microbiol. 2007; 45(6):1777-82. PMC: 1933066. DOI: 10.1128/JCM.02488-06. View