Literature DB >> 6811439

Reactivation of Rickettsia rickettsii in Dermacentor andersoni ticks: an ultrastructural analysis.

S F Hayes, W Burgdorfer.   

Abstract

Virulent Rickettsia in Dermacentor andersoni lose their pathogenicity and virulence for guinea pigs when subjected to physiological stresses, such as starvation (overwintering), of its tick vector. However, incubation of infected ticks at an elevated temperature (37 degrees C) for 24 to 48 h or feeding for a time (usually greater than 10 h) induces R. rickettsii to revert to a virulent state, a phenomenon defined as "reactivation." Electron microscopy reveals that the microcapsular and slime layers of R. rickettsii undergo changes dependent upon the physiological conditions within the tick vector. In engorged ticks, the microcapsular layer is readily identified as a discrete layer, approximately 16 nm thick, composed of globular subunits that have a periodicity of approximately 10 nm. The slime layer external to the microcapsular layer forms a discrete electron-lucent zone around the rickettsia. In starved ticks, neither the microcapsular layer nor slime layer remains a discrete entity. Instead, they are shed and form stringy, shredded, and somewhat flocculent strands of low electron density without periodicity. Incubation at 37 degrees C or feeding of starved infected ticks results in the restoration of a discrete microcapsular and slime layer. These reversible structural modifications are linked to physiological changes in the tick host and correlate with reactivation, i.e., restoration of pathogenicity and virulence of R. rickettsii.

Entities:  

Mesh:

Year:  1982        PMID: 6811439      PMCID: PMC347597          DOI: 10.1128/iai.37.2.779-785.1982

Source DB:  PubMed          Journal:  Infect Immun        ISSN: 0019-9567            Impact factor:   3.441


  38 in total

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Review 6.  Microbial surfaces in relation to pathogenicity.

Authors:  H Smith
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Authors:  P A Diehl; J Rehacek; M Bazlikova
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8.  External layers of Rickettsia prowazekii and Rickettsia rickettsii: occurrence of a slime layer.

Authors:  D J Silverman; C L Wisseman; A D Waddell; M Jones
Journal:  Infect Immun       Date:  1978-10       Impact factor: 3.441

9.  Fine structure of Rickettsia canada in tissues of Dermacentor andersoni Stiles.

Authors:  L P Brinton; W Burgdorfer
Journal:  J Bacteriol       Date:  1971-03       Impact factor: 3.490

10.  Electron microscopy studies of the limiting layers of the rickettsia Coxiella burneti.

Authors:  P R Burton; J Stueckemann; D Paretsky
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  34 in total

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Review 5.  Ecological relationships between ticks and rickettsiae.

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Journal:  Eur J Epidemiol       Date:  1989-12       Impact factor: 8.082

6.  Isolation and propagation of the Ap-Variant 1 strain of Anaplasma phagocytophilum in a tick cell line.

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9.  Analysis of the Rickettsia africae genome reveals that virulence acquisition in Rickettsia species may be explained by genome reduction.

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10.  Genome sequence of the endosymbiont Rickettsia peacockii and comparison with virulent Rickettsia rickettsii: identification of virulence factors.

Authors:  Roderick F Felsheim; Timothy J Kurtti; Ulrike G Munderloh
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