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Whole-genome relationships among Francisella bacteria of diverse origins define new species and provide specific regions for detection

Journal Article · · Applied and Environmental Microbiology
DOI:https://doi.org/10.1128/AEM.02589-16· OSTI ID:1338768
 [1];  [2];  [1];  [3];  [4];  [1];  [5]
  1. Los Alamos National Lab. (LANL), Los Alamos, NM (United States)
  2. Centers for Disease Control and Prevention, Fort Collins, CO (United States)
  3. Dept. of Homeland Security, Washington, D.C. (United States)
  4. U.S. Food and Drug Administration, Silver Springs, MD (United States)
  5. Univ. of Bayreuth (Germany)
Francisella tularensis is a highly virulent zoonotic pathogen that causes tularemia and, because of weaponization efforts in past world wars, is considered a tier 1 biothreat agent. Detection and surveillance of F. tularensis may be confounded by the presence of uncharacterized, closely related organisms. Through DNA-based diagnostics and environmental surveys, novel clinical and environmental Francisella isolates have been obtained in recent years. Here we present 7 new Francisella genomes and a comparison of their characteristics to each other and to 24 publicly available genomes as well as a comparative analysis of 16S rRNA and sdhA genes from over 90 Francisella strains. Delineation of new species in bacteria is challenging, especially when isolates having very close genomic characteristics exhibit different physiological features—for example, when some are virulent pathogens in humans and animals while others are nonpathogenic or are opportunistic pathogens. Species resolution within Francisella varies with analyses of single genes, multiple gene or protein sets, or whole-genome comparisons of nucleic acid and amino acid sequences. Analyses focusing on single genes (16S rRNA, sdhA), multiple gene sets (virulence genes, lipopolysaccharide [LPS] biosynthesis genes, pathogenicity island), and whole-genome comparisons (nucleotide and protein) gave congruent results, but with different levels of discrimination confidence. We designate four new species within the genus; Francisella opportunistica sp. nov. (MA06-7296), Francisella salina sp. nov. (TX07-7308), Francisella uliginis sp. nov. (TX07-7310), and Francisella frigiditurris sp. nov. (CA97-1460). Lastly, this study provides a robust comparative framework to discern species and virulence features of newly detected Francisella bacteria.
Research Organization:
Los Alamos National Laboratory (LANL)
Sponsoring Organization:
DHS; USDOE
Grant/Contract Number:
AC52-06NA25396
OSTI ID:
1338768
Report Number(s):
LA-UR-16-20885
Journal Information:
Applied and Environmental Microbiology, Journal Name: Applied and Environmental Microbiology Journal Issue: 3 Vol. 83; ISSN 0099-2240
Publisher:
American Society for MicrobiologyCopyright Statement
Country of Publication:
United States
Language:
English

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Innate Immune Recognition: An Issue More Complex Than Expected journal July 2019
A Polyphasic Approach for Phenotypic and Genetic Characterization of the Fastidious Aquatic Pathogen Francisella noatunensis subsp. orientalis journal December 2017

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