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Detection of diverse new francisella-like bacteria in environmental samples

Barns, Susan M. and Grow, Christy C. and Okinaka, Richard T. and Keim, Paul and Kuske, Cheryl R. (2005) Detection of diverse new francisella-like bacteria in environmental samples. Applied and Environmental Microbiology, 71 (9). pp. 5494-5500. ISSN 1098-5336

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Publisher’s or external URL: http://dx.doi.org/10.1128/aem.71.9.5494-5500.2005

Abstract

Following detection of putative Francisella species in aerosol samples from Houston, Texas, we surveyed soil and water samples from the area for the agent of tularemia, Francisella tularensis, and related species. The initial survey used 16S rRNA gene primers to detect Francisella species and related organisms by PCR amplification of DNA extracts from environmental samples. This analysis indicated that sequences related to Francisella were present in one water and seven soil samples. This is the first report of the detection of Francisella-related species in soil samples by DNA-based methods. Cloning and sequencing of PCR products indicated the presence of a wide variety of Francisella-related species. Sequences from two soil samples were 99.9% similar to previously reported sequences from F. tularensis isolates and may represent new subspecies. Additional analyses with primer sets developed for detection and differentiation of F. tularensis subspecies support the finding of very close relatives to known F. tularensis strains in some samples. While the pathogenicity of these organisms is unknown, they have the potential to be detected in F. tularensis-specific assays. Similarly, a potential new subspecies of Francisella philomiragia was identified. The majority of sequences obtained, while more similar to those of Francisella than to any other genus, were phylogenetically distinct from known species and formed several new clades potentially representing new species or genera. The results of this study revise our understanding of the diversity and distribution of Francisella and have implications for tularemia epidemiology and our ability to detect bioterrorist activities.

Item Type: Article
ID number or DOI: 10.1128/AEM.71.9.5494-5500.2005
Keywords: aerosols; Air sampling; bacteria; Bioassay; Communicable diseases -- Transmission; differentiation; Discrimination; DNA; dna-sequences; environmental impact; Environmental monitoring; epidemiology; Francisella; Francisella tularensis; Fungus-bacterium relationships; Genetic engineering; Gram-negative bacteria; identification; marthas-vineyard; multiple-locus; new species; new subspecies; pathogenicity; PCR; Phylogeny; Polymerase chain reaction; primers; Public health; RNA; rRNA 16S; soil; soils; strains; Tularemia; tularensis; virulence; water; Water sampling
Subjects: Q Science > QR Microbiology
MeSH Subjects: B Organisms > B03 Bacteria
NAU Depositing Author Academic Status: Faculty/Staff
Department/Unit: College of Engineering, Forestry, and Natural Science > Biological Sciences
Date Deposited: 24 Aug 2015 20:30
URI: http://openknowledge.nau.edu/id/eprint/71

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