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Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur

Understanding the frequency, spatiotemporal dynamics and impacts of parasite coinfections is fundamental to developing control measures and predicting disease impacts. The European turtle dove (Streptopelia turtur) is one of Europe's most threatened bird species. High prevalence of infection by...

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Autores principales: Thomas, Rebecca C., Dunn, Jenny C., Dawson, Deborah A., Hipperson, Helen, Horsburgh, Gavin J., Morris, Antony J., Orsman, Chris, Mallord, John, Grice, Philip V., Hamer, Keith C., Eraud, Cyril, Hervé, Lormée, Goodman, Simon J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9325524/
https://www.ncbi.nlm.nih.gov/pubmed/35253301
http://dx.doi.org/10.1111/mec.16421
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author Thomas, Rebecca C.
Dunn, Jenny C.
Dawson, Deborah A.
Hipperson, Helen
Horsburgh, Gavin J.
Morris, Antony J.
Orsman, Chris
Mallord, John
Grice, Philip V.
Hamer, Keith C.
Eraud, Cyril
Hervé, Lormée
Goodman, Simon J.
author_facet Thomas, Rebecca C.
Dunn, Jenny C.
Dawson, Deborah A.
Hipperson, Helen
Horsburgh, Gavin J.
Morris, Antony J.
Orsman, Chris
Mallord, John
Grice, Philip V.
Hamer, Keith C.
Eraud, Cyril
Hervé, Lormée
Goodman, Simon J.
author_sort Thomas, Rebecca C.
collection PubMed
description Understanding the frequency, spatiotemporal dynamics and impacts of parasite coinfections is fundamental to developing control measures and predicting disease impacts. The European turtle dove (Streptopelia turtur) is one of Europe's most threatened bird species. High prevalence of infection by the protozoan parasite Trichomonas gallinae has previously been identified, but the role of this and other coinfecting parasites in turtle dove declines remains unclear. Using a high‐throughput sequencing approach, we identified seven strains of T. gallinae, including two novel strains, from ITS1/5.8S/ITS2 ribosomal sequences in turtle doves on breeding and wintering grounds, with further intrastrain variation and four novel subtypes revealed by the iron‐hydrogenase gene. High spatiotemporal turnover was observed in T. gallinae strain composition, and infection was prevalent in all populations (89%–100%). Coinfection by multiple Trichomonas strains was rarer than expected (1% observed compared to 38.6% expected), suggesting either within‐host competition, or high mortality of coinfected individuals. In contrast, coinfection by multiple haemosporidians was common (43%), as was coinfection by haemosporidians and T. gallinae (90%), with positive associations between strains of T. gallinae and Leucocytozoon suggesting a mechanism such as parasite‐induced immune modulation. We found no evidence for negative associations between coinfections and host body condition. We suggest that longitudinal studies involving the recapture and investigation of infection status of individuals over their lifespan are crucial to understand the epidemiology of coinfections in natural populations.
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spelling pubmed-93255242022-07-30 Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur Thomas, Rebecca C. Dunn, Jenny C. Dawson, Deborah A. Hipperson, Helen Horsburgh, Gavin J. Morris, Antony J. Orsman, Chris Mallord, John Grice, Philip V. Hamer, Keith C. Eraud, Cyril Hervé, Lormée Goodman, Simon J. Mol Ecol ORIGINAL ARTICLES Understanding the frequency, spatiotemporal dynamics and impacts of parasite coinfections is fundamental to developing control measures and predicting disease impacts. The European turtle dove (Streptopelia turtur) is one of Europe's most threatened bird species. High prevalence of infection by the protozoan parasite Trichomonas gallinae has previously been identified, but the role of this and other coinfecting parasites in turtle dove declines remains unclear. Using a high‐throughput sequencing approach, we identified seven strains of T. gallinae, including two novel strains, from ITS1/5.8S/ITS2 ribosomal sequences in turtle doves on breeding and wintering grounds, with further intrastrain variation and four novel subtypes revealed by the iron‐hydrogenase gene. High spatiotemporal turnover was observed in T. gallinae strain composition, and infection was prevalent in all populations (89%–100%). Coinfection by multiple Trichomonas strains was rarer than expected (1% observed compared to 38.6% expected), suggesting either within‐host competition, or high mortality of coinfected individuals. In contrast, coinfection by multiple haemosporidians was common (43%), as was coinfection by haemosporidians and T. gallinae (90%), with positive associations between strains of T. gallinae and Leucocytozoon suggesting a mechanism such as parasite‐induced immune modulation. We found no evidence for negative associations between coinfections and host body condition. We suggest that longitudinal studies involving the recapture and investigation of infection status of individuals over their lifespan are crucial to understand the epidemiology of coinfections in natural populations. John Wiley and Sons Inc. 2022-04-02 2022-05 /pmc/articles/PMC9325524/ /pubmed/35253301 http://dx.doi.org/10.1111/mec.16421 Text en © 2022 The Authors. Molecular Ecology published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle ORIGINAL ARTICLES
Thomas, Rebecca C.
Dunn, Jenny C.
Dawson, Deborah A.
Hipperson, Helen
Horsburgh, Gavin J.
Morris, Antony J.
Orsman, Chris
Mallord, John
Grice, Philip V.
Hamer, Keith C.
Eraud, Cyril
Hervé, Lormée
Goodman, Simon J.
Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur
title Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur
title_full Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur
title_fullStr Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur
title_full_unstemmed Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur
title_short Assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: Insights for the conservation of European turtle doves Streptopelia turtur
title_sort assessing rates of parasite coinfection and spatiotemporal strain variation via metabarcoding: insights for the conservation of european turtle doves streptopelia turtur
topic ORIGINAL ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9325524/
https://www.ncbi.nlm.nih.gov/pubmed/35253301
http://dx.doi.org/10.1111/mec.16421
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