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Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases

Ticks and the pathogens they transmit constitute a growing burden for human and animal health worldwide. Vector competence is a component of vectorial capacity and depends on genetic determinants affecting the ability of a vector to transmit a pathogen. These determinants affect traits such as tick-...

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Autores principales: de la Fuente, José, Antunes, Sandra, Bonnet, Sarah, Cabezas-Cruz, Alejandro, Domingos, Ana G., Estrada-Peña, Agustín, Johnson, Nicholas, Kocan, Katherine M., Mansfield, Karen L., Nijhof, Ard M., Papa, Anna, Rudenko, Nataliia, Villar, Margarita, Alberdi, Pilar, Torina, Alessandra, Ayllón, Nieves, Vancova, Marie, Golovchenko, Maryna, Grubhoffer, Libor, Caracappa, Santo, Fooks, Anthony R., Gortazar, Christian, Rego, Ryan O. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383669/
https://www.ncbi.nlm.nih.gov/pubmed/28439499
http://dx.doi.org/10.3389/fcimb.2017.00114
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author de la Fuente, José
Antunes, Sandra
Bonnet, Sarah
Cabezas-Cruz, Alejandro
Domingos, Ana G.
Estrada-Peña, Agustín
Johnson, Nicholas
Kocan, Katherine M.
Mansfield, Karen L.
Nijhof, Ard M.
Papa, Anna
Rudenko, Nataliia
Villar, Margarita
Alberdi, Pilar
Torina, Alessandra
Ayllón, Nieves
Vancova, Marie
Golovchenko, Maryna
Grubhoffer, Libor
Caracappa, Santo
Fooks, Anthony R.
Gortazar, Christian
Rego, Ryan O. M.
author_facet de la Fuente, José
Antunes, Sandra
Bonnet, Sarah
Cabezas-Cruz, Alejandro
Domingos, Ana G.
Estrada-Peña, Agustín
Johnson, Nicholas
Kocan, Katherine M.
Mansfield, Karen L.
Nijhof, Ard M.
Papa, Anna
Rudenko, Nataliia
Villar, Margarita
Alberdi, Pilar
Torina, Alessandra
Ayllón, Nieves
Vancova, Marie
Golovchenko, Maryna
Grubhoffer, Libor
Caracappa, Santo
Fooks, Anthony R.
Gortazar, Christian
Rego, Ryan O. M.
author_sort de la Fuente, José
collection PubMed
description Ticks and the pathogens they transmit constitute a growing burden for human and animal health worldwide. Vector competence is a component of vectorial capacity and depends on genetic determinants affecting the ability of a vector to transmit a pathogen. These determinants affect traits such as tick-host-pathogen and susceptibility to pathogen infection. Therefore, the elucidation of the mechanisms involved in tick-pathogen interactions that affect vector competence is essential for the identification of molecular drivers for tick-borne diseases. In this review, we provide a comprehensive overview of tick-pathogen molecular interactions for bacteria, viruses, and protozoa affecting human and animal health. Additionally, the impact of tick microbiome on these interactions was considered. Results show that different pathogens evolved similar strategies such as manipulation of the immune response to infect vectors and facilitate multiplication and transmission. Furthermore, some of these strategies may be used by pathogens to infect both tick and mammalian hosts. Identification of interactions that promote tick survival, spread, and pathogen transmission provides the opportunity to disrupt these interactions and lead to a reduction in tick burden and the prevalence of tick-borne diseases. Targeting some of the similar mechanisms used by the pathogens for infection and transmission by ticks may assist in development of preventative strategies against multiple tick-borne diseases.
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spelling pubmed-53836692017-04-24 Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases de la Fuente, José Antunes, Sandra Bonnet, Sarah Cabezas-Cruz, Alejandro Domingos, Ana G. Estrada-Peña, Agustín Johnson, Nicholas Kocan, Katherine M. Mansfield, Karen L. Nijhof, Ard M. Papa, Anna Rudenko, Nataliia Villar, Margarita Alberdi, Pilar Torina, Alessandra Ayllón, Nieves Vancova, Marie Golovchenko, Maryna Grubhoffer, Libor Caracappa, Santo Fooks, Anthony R. Gortazar, Christian Rego, Ryan O. M. Front Cell Infect Microbiol Microbiology Ticks and the pathogens they transmit constitute a growing burden for human and animal health worldwide. Vector competence is a component of vectorial capacity and depends on genetic determinants affecting the ability of a vector to transmit a pathogen. These determinants affect traits such as tick-host-pathogen and susceptibility to pathogen infection. Therefore, the elucidation of the mechanisms involved in tick-pathogen interactions that affect vector competence is essential for the identification of molecular drivers for tick-borne diseases. In this review, we provide a comprehensive overview of tick-pathogen molecular interactions for bacteria, viruses, and protozoa affecting human and animal health. Additionally, the impact of tick microbiome on these interactions was considered. Results show that different pathogens evolved similar strategies such as manipulation of the immune response to infect vectors and facilitate multiplication and transmission. Furthermore, some of these strategies may be used by pathogens to infect both tick and mammalian hosts. Identification of interactions that promote tick survival, spread, and pathogen transmission provides the opportunity to disrupt these interactions and lead to a reduction in tick burden and the prevalence of tick-borne diseases. Targeting some of the similar mechanisms used by the pathogens for infection and transmission by ticks may assist in development of preventative strategies against multiple tick-borne diseases. Frontiers Media S.A. 2017-04-07 /pmc/articles/PMC5383669/ /pubmed/28439499 http://dx.doi.org/10.3389/fcimb.2017.00114 Text en Copyright © 2017 de la Fuente, Antunes, Bonnet, Cabezas-Cruz, Domingos, Estrada-Peña, Johnson, Kocan, Mansfield, Nijhof, Papa, Rudenko, Villar, Alberdi, Torina, Ayllón, Vancova, Golovchenko, Grubhoffer, Caracappa, Fooks, Gortazar and Rego. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
de la Fuente, José
Antunes, Sandra
Bonnet, Sarah
Cabezas-Cruz, Alejandro
Domingos, Ana G.
Estrada-Peña, Agustín
Johnson, Nicholas
Kocan, Katherine M.
Mansfield, Karen L.
Nijhof, Ard M.
Papa, Anna
Rudenko, Nataliia
Villar, Margarita
Alberdi, Pilar
Torina, Alessandra
Ayllón, Nieves
Vancova, Marie
Golovchenko, Maryna
Grubhoffer, Libor
Caracappa, Santo
Fooks, Anthony R.
Gortazar, Christian
Rego, Ryan O. M.
Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases
title Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases
title_full Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases
title_fullStr Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases
title_full_unstemmed Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases
title_short Tick-Pathogen Interactions and Vector Competence: Identification of Molecular Drivers for Tick-Borne Diseases
title_sort tick-pathogen interactions and vector competence: identification of molecular drivers for tick-borne diseases
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383669/
https://www.ncbi.nlm.nih.gov/pubmed/28439499
http://dx.doi.org/10.3389/fcimb.2017.00114
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