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A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil

Since the introduction of the Zika virus (ZIKV) into Brazil in 2015, its transmission dynamics have been intensively studied in many parts of the country, although much is still unknown about its circulation in the midwestern states. Here, using nanopore technology, we obtained 23 novel partial and...

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Autores principales: Giovanetti, Marta, Pereira, Luiz Augusto, Adelino, Talita Émile Ribeiro, Fonseca, Vagner, Xavier, Joilson, de Araújo Fabri, Allison, Slavov, Svetoslav Nanev, da Silva Lemos, Poliana, de Almeida Marques, William, Kashima, Simone, Lourenço, José, de Oliveira, Tulio, Campelo de Albuquerque, Carlos Frederico, Freitas, Carla, Peterka, Cassio Roberto Leonel, da Cunha, Rivaldo Venancio, Mendonça, Ana Flávia, Lemes da Silva, Vinícius, Alcantara, Luiz Carlos Junior
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9045127/
https://www.ncbi.nlm.nih.gov/pubmed/35254139
http://dx.doi.org/10.1128/spectrum.00155-22
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author Giovanetti, Marta
Pereira, Luiz Augusto
Adelino, Talita Émile Ribeiro
Fonseca, Vagner
Xavier, Joilson
de Araújo Fabri, Allison
Slavov, Svetoslav Nanev
da Silva Lemos, Poliana
de Almeida Marques, William
Kashima, Simone
Lourenço, José
de Oliveira, Tulio
Campelo de Albuquerque, Carlos Frederico
Freitas, Carla
Peterka, Cassio Roberto Leonel
da Cunha, Rivaldo Venancio
Mendonça, Ana Flávia
Lemes da Silva, Vinícius
Alcantara, Luiz Carlos Junior
author_facet Giovanetti, Marta
Pereira, Luiz Augusto
Adelino, Talita Émile Ribeiro
Fonseca, Vagner
Xavier, Joilson
de Araújo Fabri, Allison
Slavov, Svetoslav Nanev
da Silva Lemos, Poliana
de Almeida Marques, William
Kashima, Simone
Lourenço, José
de Oliveira, Tulio
Campelo de Albuquerque, Carlos Frederico
Freitas, Carla
Peterka, Cassio Roberto Leonel
da Cunha, Rivaldo Venancio
Mendonça, Ana Flávia
Lemes da Silva, Vinícius
Alcantara, Luiz Carlos Junior
author_sort Giovanetti, Marta
collection PubMed
description Since the introduction of the Zika virus (ZIKV) into Brazil in 2015, its transmission dynamics have been intensively studied in many parts of the country, although much is still unknown about its circulation in the midwestern states. Here, using nanopore technology, we obtained 23 novel partial and near-complete ZIKV genomes from the state of Goiás, located in the Midwest of Brazil. Genomic, phylogenetic, and epidemiological approaches were used to retrospectively explore the spatiotemporal evolution of the ZIKV-Asian genotype in this region. As a likely consequence of a gradual accumulation of herd immunity, epidemiological data revealed a decline in the number of reported cases over 2018 to 2021. Phylogenetic reconstructions revealed that multiple independent introductions of the Asian lineage have occurred in Goiás over time and revealed a complex transmission dynamic between epidemic seasons. Together, our results highlight the utility of genomic, epidemiological, and evolutionary methods to understand mosquito-borne epidemics. IMPORTANCE Despite the considerable morbidity and mortality of arboviral infections in Brazil, such as Zika, chikungunya, dengue fever, and yellow fever, our understanding of these outbreaks is hampered by the limited availability of genomic data to track and control the epidemic. In this study, we provide a retrospective reconstruction of the Zika virus transmission dynamics in the state of Goiás by analyzing genomic data from areas in Midwest Brazil not covered by other previous studies. Our study provides an understanding of how ZIKV initiates transmission in this region and reveals a complex transmission dynamic between epidemic seasons. Together, our results highlight the utility of genomic, epidemiological, and evolutionary methods to understand mosquito-borne epidemics, revealing how this toolkit can be used to help policymakers prioritize areas to be targeted, especially in the context of finite public health resources.
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spelling pubmed-90451272022-04-28 A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil Giovanetti, Marta Pereira, Luiz Augusto Adelino, Talita Émile Ribeiro Fonseca, Vagner Xavier, Joilson de Araújo Fabri, Allison Slavov, Svetoslav Nanev da Silva Lemos, Poliana de Almeida Marques, William Kashima, Simone Lourenço, José de Oliveira, Tulio Campelo de Albuquerque, Carlos Frederico Freitas, Carla Peterka, Cassio Roberto Leonel da Cunha, Rivaldo Venancio Mendonça, Ana Flávia Lemes da Silva, Vinícius Alcantara, Luiz Carlos Junior Microbiol Spectr Research Article Since the introduction of the Zika virus (ZIKV) into Brazil in 2015, its transmission dynamics have been intensively studied in many parts of the country, although much is still unknown about its circulation in the midwestern states. Here, using nanopore technology, we obtained 23 novel partial and near-complete ZIKV genomes from the state of Goiás, located in the Midwest of Brazil. Genomic, phylogenetic, and epidemiological approaches were used to retrospectively explore the spatiotemporal evolution of the ZIKV-Asian genotype in this region. As a likely consequence of a gradual accumulation of herd immunity, epidemiological data revealed a decline in the number of reported cases over 2018 to 2021. Phylogenetic reconstructions revealed that multiple independent introductions of the Asian lineage have occurred in Goiás over time and revealed a complex transmission dynamic between epidemic seasons. Together, our results highlight the utility of genomic, epidemiological, and evolutionary methods to understand mosquito-borne epidemics. IMPORTANCE Despite the considerable morbidity and mortality of arboviral infections in Brazil, such as Zika, chikungunya, dengue fever, and yellow fever, our understanding of these outbreaks is hampered by the limited availability of genomic data to track and control the epidemic. In this study, we provide a retrospective reconstruction of the Zika virus transmission dynamics in the state of Goiás by analyzing genomic data from areas in Midwest Brazil not covered by other previous studies. Our study provides an understanding of how ZIKV initiates transmission in this region and reveals a complex transmission dynamic between epidemic seasons. Together, our results highlight the utility of genomic, epidemiological, and evolutionary methods to understand mosquito-borne epidemics, revealing how this toolkit can be used to help policymakers prioritize areas to be targeted, especially in the context of finite public health resources. American Society for Microbiology 2022-03-07 /pmc/articles/PMC9045127/ /pubmed/35254139 http://dx.doi.org/10.1128/spectrum.00155-22 Text en Copyright © 2022 Giovanetti 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
Giovanetti, Marta
Pereira, Luiz Augusto
Adelino, Talita Émile Ribeiro
Fonseca, Vagner
Xavier, Joilson
de Araújo Fabri, Allison
Slavov, Svetoslav Nanev
da Silva Lemos, Poliana
de Almeida Marques, William
Kashima, Simone
Lourenço, José
de Oliveira, Tulio
Campelo de Albuquerque, Carlos Frederico
Freitas, Carla
Peterka, Cassio Roberto Leonel
da Cunha, Rivaldo Venancio
Mendonça, Ana Flávia
Lemes da Silva, Vinícius
Alcantara, Luiz Carlos Junior
A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil
title A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil
title_full A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil
title_fullStr A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil
title_full_unstemmed A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil
title_short A Retrospective Overview of Zika Virus Evolution in the Midwest of Brazil
title_sort retrospective overview of zika virus evolution in the midwest of brazil
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9045127/
https://www.ncbi.nlm.nih.gov/pubmed/35254139
http://dx.doi.org/10.1128/spectrum.00155-22
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