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Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru

Infectious bronchitis is a highly contagious viral disease that represents an economic threat for poultry despite the wide use of vaccination. To characterize the virus circulating in Peru, we analyzed 200 samples, including nasopharyngeal swabs and multiple tissues collected from animals suspected...

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Autores principales: Icochea, Eliana, González, Rosa, Castro-Sanguinetti, Gina, Maturrano, Lenin, Alzamora, Luis, Sesti, Luiz, Chacón, Jorge, More-Bayona, Juan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051523/
https://www.ncbi.nlm.nih.gov/pubmed/36985264
http://dx.doi.org/10.3390/microorganisms11030691
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author Icochea, Eliana
González, Rosa
Castro-Sanguinetti, Gina
Maturrano, Lenin
Alzamora, Luis
Sesti, Luiz
Chacón, Jorge
More-Bayona, Juan
author_facet Icochea, Eliana
González, Rosa
Castro-Sanguinetti, Gina
Maturrano, Lenin
Alzamora, Luis
Sesti, Luiz
Chacón, Jorge
More-Bayona, Juan
author_sort Icochea, Eliana
collection PubMed
description Infectious bronchitis is a highly contagious viral disease that represents an economic threat for poultry despite the wide use of vaccination. To characterize the virus circulating in Peru, we analyzed 200 samples, including nasopharyngeal swabs and multiple tissues collected from animals suspected of being infected with infectious bronchitis virus (IBV) between January and August in 2015. All animals had at least one positive sample for IBV by RT-PCR. Out of these positive samples, eighteen (18) were selected for viral isolation and a partial S1 sequencing. Phylogenetic analysis showed that sixteen isolates clustered with members of GI-16 lineage, also known as Q1, with nucleotide homology ranging from 93% to 98%. The two remaining isolates grouped with members of the GI-1 lineage. Our study reveals circulation of GI-16 lineage during this period in poultry systems in Peru, along with GI-1 lineage (vaccine-derived). Moreover, those IBV GI-16 isolates showed unique nucleotide and amino acid changes compared to their closest relatives. Altogether, these findings reveal the circulation of GI-16 lineage while describing changes at key regions of the S protein that might be of relevance for vaccine evasion. These results highlight the importance of genetic surveillance for improving vaccination strategies against infectious bronchitis.
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spelling pubmed-100515232023-03-30 Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru Icochea, Eliana González, Rosa Castro-Sanguinetti, Gina Maturrano, Lenin Alzamora, Luis Sesti, Luiz Chacón, Jorge More-Bayona, Juan Microorganisms Article Infectious bronchitis is a highly contagious viral disease that represents an economic threat for poultry despite the wide use of vaccination. To characterize the virus circulating in Peru, we analyzed 200 samples, including nasopharyngeal swabs and multiple tissues collected from animals suspected of being infected with infectious bronchitis virus (IBV) between January and August in 2015. All animals had at least one positive sample for IBV by RT-PCR. Out of these positive samples, eighteen (18) were selected for viral isolation and a partial S1 sequencing. Phylogenetic analysis showed that sixteen isolates clustered with members of GI-16 lineage, also known as Q1, with nucleotide homology ranging from 93% to 98%. The two remaining isolates grouped with members of the GI-1 lineage. Our study reveals circulation of GI-16 lineage during this period in poultry systems in Peru, along with GI-1 lineage (vaccine-derived). Moreover, those IBV GI-16 isolates showed unique nucleotide and amino acid changes compared to their closest relatives. Altogether, these findings reveal the circulation of GI-16 lineage while describing changes at key regions of the S protein that might be of relevance for vaccine evasion. These results highlight the importance of genetic surveillance for improving vaccination strategies against infectious bronchitis. MDPI 2023-03-08 /pmc/articles/PMC10051523/ /pubmed/36985264 http://dx.doi.org/10.3390/microorganisms11030691 Text en © 2023 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
Icochea, Eliana
González, Rosa
Castro-Sanguinetti, Gina
Maturrano, Lenin
Alzamora, Luis
Sesti, Luiz
Chacón, Jorge
More-Bayona, Juan
Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru
title Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru
title_full Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru
title_fullStr Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru
title_full_unstemmed Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru
title_short Genetic Analysis of Infectious Bronchitis Virus S1 Gene Reveals Novel Amino Acid Changes in the GI-16 Lineage in Peru
title_sort genetic analysis of infectious bronchitis virus s1 gene reveals novel amino acid changes in the gi-16 lineage in peru
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051523/
https://www.ncbi.nlm.nih.gov/pubmed/36985264
http://dx.doi.org/10.3390/microorganisms11030691
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