Literature DB >> 23966645

Stochastic environmental fluctuations drive epidemiology in experimental host-parasite metapopulations.

Alison B Duncan1, Andrew Gonzalez, Oliver Kaltz.   

Abstract

Environmental fluctuations are important for parasite spread and persistence. However, the effects of the spatial and temporal structure of environmental fluctuations on host-parasite dynamics are not well understood. Temporal fluctuations can be random but positively autocorrelated, such that the environment is similar to the recent past (red noise), or random and uncorrelated with the past (white noise). We imposed red or white temporal temperature fluctuations on experimental metapopulations of Paramecium caudatum, experiencing an epidemic of the bacterial parasite Holospora undulata. Metapopulations (two subpopulations linked by migration) experienced fluctuations between stressful (5 °C) and permissive (23 °C) conditions following red or white temporal sequences. Spatial variation in temperature fluctuations was implemented by exposing subpopulations to the same (synchronous temperatures) or different (asynchronous temperatures) temporal sequences. Red noise, compared with white noise, enhanced parasite persistence. Despite this, red noise coupled with asynchronous temperatures allowed infected host populations to maintain sizes equivalent to uninfected populations. It is likely that this occurs because subpopulations in permissive conditions rescue declining subpopulations in stressful conditions. We show how patterns of temporal and spatial environmental fluctuations can impact parasite spread and host population abundance. We conclude that accurate prediction of parasite epidemics may require realistic models of environmental noise.

Entities:  

Keywords:  epidemiology; host–parasite; red noise; spatial synchrony; variation

Mesh:

Year:  2013        PMID: 23966645      PMCID: PMC3768316          DOI: 10.1098/rspb.2013.1747

Source DB:  PubMed          Journal:  Proc Biol Sci        ISSN: 0962-8452            Impact factor:   5.349


  37 in total

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4.  Parasite-mediated protection against osmotic stress for Paramecium caudatum infected by Holospora undulata is host genotype specific.

Authors:  Alison B Duncan; Simon Fellous; Robin Accot; Marie Alart; Kevin Chantung Sobandi; Ariane Cosiaux; Oliver Kaltz
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5.  Refractory periods and climate forcing in cholera dynamics.

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Authors:  Manojit Roy; Robert D Holt; Michael Barfield
Journal:  Am Nat       Date:  2005-05-26       Impact factor: 3.926

7.  Temperature-dependent transmission and latency of Holospora undulata, a micronucleus-specific parasite of the ciliate Paramecium caudatum.

Authors:  Daniel Fels; Oliver Kaltz
Journal:  Proc Biol Sci       Date:  2006-04-22       Impact factor: 5.349

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Authors:  Krijn P Paaijmans; Simon Blanford; Andrew S Bell; Justine I Blanford; Andrew F Read; Matthew B Thomas
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10.  Regional-scale climate-variability synchrony of cholera epidemics in West Africa.

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  10 in total

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2.  Contrasted coevolutionary dynamics between a bacterial pathogen and its bacteriophages.

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3.  Evaluation of Enrichment Protocols for Bacterial Endosymbionts of Ciliates by Real-Time PCR.

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4.  Density- and trait-mediated effects of a parasite and a predator in a tri-trophic food web.

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Authors:  Sylvia L Parmentier; Kristina Maier-Sam; Klaus Failing; Dirk Enderlein; Achim D Gruber; Michael Lierz
Journal:  Sci Rep       Date:  2018-12-04       Impact factor: 4.379

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Authors:  Alex Betts; Danna R Gifford; R Craig MacLean; Kayla C King
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8.  Host-parasite Red Queen dynamics with phase-locked rare genotypes.

Authors:  Jomar F Rabajante; Jerrold M Tubay; Hiromu Ito; Takashi Uehara; Satoshi Kakishima; Satoru Morita; Jin Yoshimura; Dieter Ebert
Journal:  Sci Adv       Date:  2016-03-04       Impact factor: 14.136

9.  Determinants of population responses to environmental fluctuations.

Authors:  Jose M G Vilar; J Miguel Rubi
Journal:  Sci Rep       Date:  2018-01-17       Impact factor: 4.379

10.  The Obligate Symbiont "Candidatus Megaira polyxenophila" Has Variable Effects on the Growth of Different Host Species.

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Journal:  Front Microbiol       Date:  2020-07-08       Impact factor: 5.640

  10 in total

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