Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>

<p>Abstract</p> <p>Background</p> <p>Outbreaks of Type A tularemia due to <it>Francisella tularensis tularensis </it>are typically sporadic and unstable, greatly hindering identification of the determinants of perpetuation and human risk. Martha's Viney...

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Main Authors: Telford Sam R, Saviet Benjamin, Goethert Heidi K
Format: Article
Language:English
Published: BMC 2009-07-01
Series:BMC Microbiology
Online Access:http://www.biomedcentral.com/1471-2180/9/147
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spelling doaj-dd736bc9130a435aa70c61c702cbe6632020-11-24T21:09:26ZengBMCBMC Microbiology1471-21802009-07-019114710.1186/1471-2180-9-147Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>Telford Sam RSaviet BenjaminGoethert Heidi K<p>Abstract</p> <p>Background</p> <p>Outbreaks of Type A tularemia due to <it>Francisella tularensis tularensis </it>are typically sporadic and unstable, greatly hindering identification of the determinants of perpetuation and human risk. Martha's Vineyard, Massachusetts has experienced an outbreak of Type A tularemia which has persisted for 9 years. This unique situation has allowed us to conduct long-term eco-epidemiologic studies there. Our hypothesis is that the agent of Type A tularemia is perpetuated as a metapopulation, with many small isolated natural foci of transmission. During times of increased transmission, the foci would merge and a larger scale epizootic would occur, with greater likelihood that humans become exposed.</p> <p>Methods</p> <p>We sampled questing dog ticks from two natural foci on the island and tested them for tularemia DNA. We determined whether the force of transmission differed between the two foci. In addition, we examined the population structure of <it>F. tularensis </it>from ticks by variable number tandem repeat (VNTR) analysis, which allowed estimates of diversity, linkage disequilibrium, and eBURST analysis.</p> <p>Results</p> <p>The prevalence of tularemia DNA in ticks from our two field sites was markedly different: one site was stable over the course of the study yielding as many as 5.6% positive ticks. In contrast, infected ticks from the comparison site markedly increased in prevalence, from 0.4% in 2003 to 3.9% in 2006. Using 4 VNTR loci, we documented 75 different haplotypes (diversity = 0.91). eBURST analysis indicates that the stable site was essentially clonal, but the comparison site contained multiple unrelated lineages. The general bacterial population is evolving clonally (multilocus disequilibrium) and the bacteria in the two sites are reproductively isolated.</p> <p>Conclusion</p> <p>Even within an isolated island, tularemia natural foci that are no more than 15 km apart are uniquely segregated. One of our sites has stable transmission and the other is emergent. The population structure at the stable site is that of a clonal complex of circulating bacteria, whereas the emerging focus is likely to be derived from multiple founders. We conclude that the agent of tularemia may perpetuate in small stable natural foci and that new foci emerge as a result of spillover from such stable sites.</p> http://www.biomedcentral.com/1471-2180/9/147
collection DOAJ
language English
format Article
sources DOAJ
author Telford Sam R
Saviet Benjamin
Goethert Heidi K
spellingShingle Telford Sam R
Saviet Benjamin
Goethert Heidi K
Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>
BMC Microbiology
author_facet Telford Sam R
Saviet Benjamin
Goethert Heidi K
author_sort Telford Sam R
title Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>
title_short Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>
title_full Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>
title_fullStr Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>
title_full_unstemmed Metapopulation structure for perpetuation of <it>Francisella tularensis tularensis</it>
title_sort metapopulation structure for perpetuation of <it>francisella tularensis tularensis</it>
publisher BMC
series BMC Microbiology
issn 1471-2180
publishDate 2009-07-01
description <p>Abstract</p> <p>Background</p> <p>Outbreaks of Type A tularemia due to <it>Francisella tularensis tularensis </it>are typically sporadic and unstable, greatly hindering identification of the determinants of perpetuation and human risk. Martha's Vineyard, Massachusetts has experienced an outbreak of Type A tularemia which has persisted for 9 years. This unique situation has allowed us to conduct long-term eco-epidemiologic studies there. Our hypothesis is that the agent of Type A tularemia is perpetuated as a metapopulation, with many small isolated natural foci of transmission. During times of increased transmission, the foci would merge and a larger scale epizootic would occur, with greater likelihood that humans become exposed.</p> <p>Methods</p> <p>We sampled questing dog ticks from two natural foci on the island and tested them for tularemia DNA. We determined whether the force of transmission differed between the two foci. In addition, we examined the population structure of <it>F. tularensis </it>from ticks by variable number tandem repeat (VNTR) analysis, which allowed estimates of diversity, linkage disequilibrium, and eBURST analysis.</p> <p>Results</p> <p>The prevalence of tularemia DNA in ticks from our two field sites was markedly different: one site was stable over the course of the study yielding as many as 5.6% positive ticks. In contrast, infected ticks from the comparison site markedly increased in prevalence, from 0.4% in 2003 to 3.9% in 2006. Using 4 VNTR loci, we documented 75 different haplotypes (diversity = 0.91). eBURST analysis indicates that the stable site was essentially clonal, but the comparison site contained multiple unrelated lineages. The general bacterial population is evolving clonally (multilocus disequilibrium) and the bacteria in the two sites are reproductively isolated.</p> <p>Conclusion</p> <p>Even within an isolated island, tularemia natural foci that are no more than 15 km apart are uniquely segregated. One of our sites has stable transmission and the other is emergent. The population structure at the stable site is that of a clonal complex of circulating bacteria, whereas the emerging focus is likely to be derived from multiple founders. We conclude that the agent of tularemia may perpetuate in small stable natural foci and that new foci emerge as a result of spillover from such stable sites.</p>
url http://www.biomedcentral.com/1471-2180/9/147
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