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Update on the Phylodynamics of SADS-CoV

Coronaviruses are known to be harmful and heterogeneous viruses, able to infect a large number of hosts. Among them, SADS-CoV (Swine Acute Diarrhea Syndrome Coronavirus), also known as PEAV (Porcine Enteric Alphacoronavirus), or SeA-CoV (Swine Enteric Alphacoronavirus), is the most recent Alphacoron...

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Autores principales: Scarpa, Fabio, Sanna, Daria, Azzena, Ilenia, Cossu, Piero, Giovanetti, Marta, Benvenuto, Domenico, Coradduzza, Elisabetta, Alexiev, Ivailo, Casu, Marco, Fiori, Pier Luigi, Ciccozzi, Massimo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8402179/
https://www.ncbi.nlm.nih.gov/pubmed/34440564
http://dx.doi.org/10.3390/life11080820
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author Scarpa, Fabio
Sanna, Daria
Azzena, Ilenia
Cossu, Piero
Giovanetti, Marta
Benvenuto, Domenico
Coradduzza, Elisabetta
Alexiev, Ivailo
Casu, Marco
Fiori, Pier Luigi
Ciccozzi, Massimo
author_facet Scarpa, Fabio
Sanna, Daria
Azzena, Ilenia
Cossu, Piero
Giovanetti, Marta
Benvenuto, Domenico
Coradduzza, Elisabetta
Alexiev, Ivailo
Casu, Marco
Fiori, Pier Luigi
Ciccozzi, Massimo
author_sort Scarpa, Fabio
collection PubMed
description Coronaviruses are known to be harmful and heterogeneous viruses, able to infect a large number of hosts. Among them, SADS-CoV (Swine Acute Diarrhea Syndrome Coronavirus), also known as PEAV (Porcine Enteric Alphacoronavirus), or SeA-CoV (Swine Enteric Alphacoronavirus), is the most recent Alphacoronavirus discovered, and caused several outbreaks reported in Chinese swine herds between late 2016 and 2019. We performed an upgraded phylodinamic reconstruction of SADS-CoV based on all whole genomes available on 21 June 2021. Results showed a very close relationship between SADS-CoV and HKU2-like CoV, which may represent the evolutionary intermediate step towards the present SADS-CoV. The direct progenitor of SADS-CoV is so far unknown and, although it is well known that horseshoe bats are reservoirs for Rhinolophus bat coronavirus HKU2-like (HKU2-like CoVs), the transmission path from bats to pigs is still unclear. The discrepancies in the phylogenetic position of rodent CoV, when different molecular markers were considered, corroborate the recombination hypothesis, suggesting that wild rats, which are frequent in farms, may have played a key role. The failure of the attempt at molecular dating, due to the lack of a clock signal, also corroborates the occurrence of a recombination event hypothesis. Zoonotic infections originating in wildlife can easily become a significant threat for human health. In such a context, due to the high recombination and cross-species capabilities of Coronavirus, SADS-CoV represents a possible high-risk pathogen for humans which needs a constant molecular monitoring.
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spelling pubmed-84021792021-08-29 Update on the Phylodynamics of SADS-CoV Scarpa, Fabio Sanna, Daria Azzena, Ilenia Cossu, Piero Giovanetti, Marta Benvenuto, Domenico Coradduzza, Elisabetta Alexiev, Ivailo Casu, Marco Fiori, Pier Luigi Ciccozzi, Massimo Life (Basel) Article Coronaviruses are known to be harmful and heterogeneous viruses, able to infect a large number of hosts. Among them, SADS-CoV (Swine Acute Diarrhea Syndrome Coronavirus), also known as PEAV (Porcine Enteric Alphacoronavirus), or SeA-CoV (Swine Enteric Alphacoronavirus), is the most recent Alphacoronavirus discovered, and caused several outbreaks reported in Chinese swine herds between late 2016 and 2019. We performed an upgraded phylodinamic reconstruction of SADS-CoV based on all whole genomes available on 21 June 2021. Results showed a very close relationship between SADS-CoV and HKU2-like CoV, which may represent the evolutionary intermediate step towards the present SADS-CoV. The direct progenitor of SADS-CoV is so far unknown and, although it is well known that horseshoe bats are reservoirs for Rhinolophus bat coronavirus HKU2-like (HKU2-like CoVs), the transmission path from bats to pigs is still unclear. The discrepancies in the phylogenetic position of rodent CoV, when different molecular markers were considered, corroborate the recombination hypothesis, suggesting that wild rats, which are frequent in farms, may have played a key role. The failure of the attempt at molecular dating, due to the lack of a clock signal, also corroborates the occurrence of a recombination event hypothesis. Zoonotic infections originating in wildlife can easily become a significant threat for human health. In such a context, due to the high recombination and cross-species capabilities of Coronavirus, SADS-CoV represents a possible high-risk pathogen for humans which needs a constant molecular monitoring. MDPI 2021-08-11 /pmc/articles/PMC8402179/ /pubmed/34440564 http://dx.doi.org/10.3390/life11080820 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Scarpa, Fabio
Sanna, Daria
Azzena, Ilenia
Cossu, Piero
Giovanetti, Marta
Benvenuto, Domenico
Coradduzza, Elisabetta
Alexiev, Ivailo
Casu, Marco
Fiori, Pier Luigi
Ciccozzi, Massimo
Update on the Phylodynamics of SADS-CoV
title Update on the Phylodynamics of SADS-CoV
title_full Update on the Phylodynamics of SADS-CoV
title_fullStr Update on the Phylodynamics of SADS-CoV
title_full_unstemmed Update on the Phylodynamics of SADS-CoV
title_short Update on the Phylodynamics of SADS-CoV
title_sort update on the phylodynamics of sads-cov
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8402179/
https://www.ncbi.nlm.nih.gov/pubmed/34440564
http://dx.doi.org/10.3390/life11080820
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