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A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction

Flaviviruses are arthropod-borne viruses found worldwide and are responsible for significant human and veterinary diseases, including dengue, Zika, and West Nile fever. Some flaviviruses are insect specific and replicate only in mosquitoes. We report a genetically divergent group of insect-specific...

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Autores principales: Colmant, Agathe M. G., Hobson-Peters, Jody, Bielefeldt-Ohmann, Helle, van den Hurk, Andrew F., Hall-Mendelin, Sonja, Chow, Weng Kong, Johansen, Cheryl A., Fros, Jelke, Simmonds, Peter, Watterson, Daniel, Cazier, Chris, Etebari, Kayvan, Asgari, Sassan, Schulz, Benjamin L., Beebe, Nigel, Vet, Laura J., Piyasena, Thisun B. H., Nguyen, Hong-Duyen, Barnard, Ross T., Hall, Roy A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5506557/
https://www.ncbi.nlm.nih.gov/pubmed/28713857
http://dx.doi.org/10.1128/mSphere.00262-17
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author Colmant, Agathe M. G.
Hobson-Peters, Jody
Bielefeldt-Ohmann, Helle
van den Hurk, Andrew F.
Hall-Mendelin, Sonja
Chow, Weng Kong
Johansen, Cheryl A.
Fros, Jelke
Simmonds, Peter
Watterson, Daniel
Cazier, Chris
Etebari, Kayvan
Asgari, Sassan
Schulz, Benjamin L.
Beebe, Nigel
Vet, Laura J.
Piyasena, Thisun B. H.
Nguyen, Hong-Duyen
Barnard, Ross T.
Hall, Roy A.
author_facet Colmant, Agathe M. G.
Hobson-Peters, Jody
Bielefeldt-Ohmann, Helle
van den Hurk, Andrew F.
Hall-Mendelin, Sonja
Chow, Weng Kong
Johansen, Cheryl A.
Fros, Jelke
Simmonds, Peter
Watterson, Daniel
Cazier, Chris
Etebari, Kayvan
Asgari, Sassan
Schulz, Benjamin L.
Beebe, Nigel
Vet, Laura J.
Piyasena, Thisun B. H.
Nguyen, Hong-Duyen
Barnard, Ross T.
Hall, Roy A.
author_sort Colmant, Agathe M. G.
collection PubMed
description Flaviviruses are arthropod-borne viruses found worldwide and are responsible for significant human and veterinary diseases, including dengue, Zika, and West Nile fever. Some flaviviruses are insect specific and replicate only in mosquitoes. We report a genetically divergent group of insect-specific flaviviruses from Anopheles mosquitoes that do not replicate in arthropod cell lines or heterologous Anopheles species, exhibiting unprecedented specialization for their host species. Determination of the complete sequences of the RNA genomes of three of these viruses, Karumba virus (KRBV), Haslams Creek virus, and Mac Peak virus (McPV), that are found in high prevalence in some Anopheles mosquito populations and detection of virus-specific proteins, replicative double-stranded RNA, and small interfering RNA responses in the host mosquito species provided strong evidence of a functional replicating virus in the mosquito midgut. Analysis of nucleotide composition in the KRBV and McPV sequences also revealed a pattern consistent with the virus evolving to replicate only in insects. These findings represent a significant advance in our knowledge of mosquito-borne flavivirus ecology, host restriction, and evolution. IMPORTANCE Flaviviruses like dengue, Zika, or West Nile virus infect millions of people each year and are transmitted to humans via infected-mosquito bites. A subset of flaviviruses can only replicate in the mosquito host, and recent studies have shown that some can interfere with pathogenic flaviviruses in mosquitoes and limit the replication and transmission of the latter. The insect-specific flaviviruses (ISFs) reported here form a new Anopheles mosquito-associated clade separate from the Aedes- and Culex-associated ISF clades. The identification of distinct clades for each mosquito genus provides new insights into the evolution and ecology of flaviviruses. One of these viruses was shown to replicate in the midgut of the mosquito host and exhibit the most specialized host restriction reported to date for ISFs. Understanding this unprecedented host restriction in ISFs could help identify the mechanisms involved in the evolution of flaviviruses and their emergence as mosquito-borne pathogens.
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spelling pubmed-55065572017-07-14 A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction Colmant, Agathe M. G. Hobson-Peters, Jody Bielefeldt-Ohmann, Helle van den Hurk, Andrew F. Hall-Mendelin, Sonja Chow, Weng Kong Johansen, Cheryl A. Fros, Jelke Simmonds, Peter Watterson, Daniel Cazier, Chris Etebari, Kayvan Asgari, Sassan Schulz, Benjamin L. Beebe, Nigel Vet, Laura J. Piyasena, Thisun B. H. Nguyen, Hong-Duyen Barnard, Ross T. Hall, Roy A. mSphere Research Article Flaviviruses are arthropod-borne viruses found worldwide and are responsible for significant human and veterinary diseases, including dengue, Zika, and West Nile fever. Some flaviviruses are insect specific and replicate only in mosquitoes. We report a genetically divergent group of insect-specific flaviviruses from Anopheles mosquitoes that do not replicate in arthropod cell lines or heterologous Anopheles species, exhibiting unprecedented specialization for their host species. Determination of the complete sequences of the RNA genomes of three of these viruses, Karumba virus (KRBV), Haslams Creek virus, and Mac Peak virus (McPV), that are found in high prevalence in some Anopheles mosquito populations and detection of virus-specific proteins, replicative double-stranded RNA, and small interfering RNA responses in the host mosquito species provided strong evidence of a functional replicating virus in the mosquito midgut. Analysis of nucleotide composition in the KRBV and McPV sequences also revealed a pattern consistent with the virus evolving to replicate only in insects. These findings represent a significant advance in our knowledge of mosquito-borne flavivirus ecology, host restriction, and evolution. IMPORTANCE Flaviviruses like dengue, Zika, or West Nile virus infect millions of people each year and are transmitted to humans via infected-mosquito bites. A subset of flaviviruses can only replicate in the mosquito host, and recent studies have shown that some can interfere with pathogenic flaviviruses in mosquitoes and limit the replication and transmission of the latter. The insect-specific flaviviruses (ISFs) reported here form a new Anopheles mosquito-associated clade separate from the Aedes- and Culex-associated ISF clades. The identification of distinct clades for each mosquito genus provides new insights into the evolution and ecology of flaviviruses. One of these viruses was shown to replicate in the midgut of the mosquito host and exhibit the most specialized host restriction reported to date for ISFs. Understanding this unprecedented host restriction in ISFs could help identify the mechanisms involved in the evolution of flaviviruses and their emergence as mosquito-borne pathogens. American Society for Microbiology 2017-07-12 /pmc/articles/PMC5506557/ /pubmed/28713857 http://dx.doi.org/10.1128/mSphere.00262-17 Text en Copyright © 2017 Colmant et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Colmant, Agathe M. G.
Hobson-Peters, Jody
Bielefeldt-Ohmann, Helle
van den Hurk, Andrew F.
Hall-Mendelin, Sonja
Chow, Weng Kong
Johansen, Cheryl A.
Fros, Jelke
Simmonds, Peter
Watterson, Daniel
Cazier, Chris
Etebari, Kayvan
Asgari, Sassan
Schulz, Benjamin L.
Beebe, Nigel
Vet, Laura J.
Piyasena, Thisun B. H.
Nguyen, Hong-Duyen
Barnard, Ross T.
Hall, Roy A.
A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction
title A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction
title_full A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction
title_fullStr A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction
title_full_unstemmed A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction
title_short A New Clade of Insect-Specific Flaviviruses from Australian Anopheles Mosquitoes Displays Species-Specific Host Restriction
title_sort new clade of insect-specific flaviviruses from australian anopheles mosquitoes displays species-specific host restriction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5506557/
https://www.ncbi.nlm.nih.gov/pubmed/28713857
http://dx.doi.org/10.1128/mSphere.00262-17
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