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Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus

Avian infectious bronchitis virus (AIBV) is classified as a member of the genus coronavirus in the family coronaviridae. The enveloped virus has a positive-sense, single-stranded RNA genome of approximately 28 kilo-bases, which has a 5′ cap structure and 3′ polyadenylation tract. The complete genome...

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Autores principales: Jin, Weiwu, Chen, Chen, Zhang, Ying, Zhao, Yiqiang, Feng, Jidong, Chen, Fuyong, Wu, Qingming, Yang, Hanchun, Wang, Ming, Yu, Jialin, Li, Ning, Gong, Yuanshi, Sun, Qixin, Chen, Zhangliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Science in China Press 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089023/
https://www.ncbi.nlm.nih.gov/pubmed/32214717
http://dx.doi.org/10.1360/03wc0347
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author Jin, Weiwu
Chen, Chen
Zhang, Ying
Zhao, Yiqiang
Feng, Jidong
Chen, Fuyong
Wu, Qingming
Yang, Hanchun
Wang, Ming
Yu, Jialin
Li, Ning
Gong, Yuanshi
Sun, Qixin
Chen, Zhangliang
author_facet Jin, Weiwu
Chen, Chen
Zhang, Ying
Zhao, Yiqiang
Feng, Jidong
Chen, Fuyong
Wu, Qingming
Yang, Hanchun
Wang, Ming
Yu, Jialin
Li, Ning
Gong, Yuanshi
Sun, Qixin
Chen, Zhangliang
author_sort Jin, Weiwu
collection PubMed
description Avian infectious bronchitis virus (AIBV) is classified as a member of the genus coronavirus in the family coronaviridae. The enveloped virus has a positive-sense, single-stranded RNA genome of approximately 28 kilo-bases, which has a 5′ cap structure and 3′ polyadenylation tract. The complete genome sequence of infectious bronchitis virus (IBV), Beijing isolate, was determined by cloning sequencing and primer walking. The whole genome is 27733 nucleotides in length, has ten open reading frames: 5′ -orf1a-orf1ab-s-3a-3b-e-m-6a-6b-n-3′. Alignments of the genome sequence of IBV Beijing isolate with those of two AIBV strains and one SARS coronavirus were performed respectively. The genome sequence of IBV Beijing isolate compared with that of the IBV strain LX4 (uncompleted, 19440 bp in size) was 91.2% similarity. However, the full-length genome sequence of IBV Beijing isolate was 85.2% identity to that of IBV Strain Beaudette, and was only 50.8% homology to that of SARS coronavirus. The results showed that the genome of IBV has remarkable variation. And IBV Beijing isolate is not closely related to SARS coronavirus. Phylogenetic analyses based on the whole genome sequence, S protein, M protein and N protein, also showed that AIBV Beijing isolate is lone virus in group III and is distant from SARS coronavirus. In conclusion, this study will contribute to the studies of diagnosis and diseases control on IBV in China.
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spelling pubmed-70890232020-03-23 Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus Jin, Weiwu Chen, Chen Zhang, Ying Zhao, Yiqiang Feng, Jidong Chen, Fuyong Wu, Qingming Yang, Hanchun Wang, Ming Yu, Jialin Li, Ning Gong, Yuanshi Sun, Qixin Chen, Zhangliang Chin Sci Bull Articles Avian infectious bronchitis virus (AIBV) is classified as a member of the genus coronavirus in the family coronaviridae. The enveloped virus has a positive-sense, single-stranded RNA genome of approximately 28 kilo-bases, which has a 5′ cap structure and 3′ polyadenylation tract. The complete genome sequence of infectious bronchitis virus (IBV), Beijing isolate, was determined by cloning sequencing and primer walking. The whole genome is 27733 nucleotides in length, has ten open reading frames: 5′ -orf1a-orf1ab-s-3a-3b-e-m-6a-6b-n-3′. Alignments of the genome sequence of IBV Beijing isolate with those of two AIBV strains and one SARS coronavirus were performed respectively. The genome sequence of IBV Beijing isolate compared with that of the IBV strain LX4 (uncompleted, 19440 bp in size) was 91.2% similarity. However, the full-length genome sequence of IBV Beijing isolate was 85.2% identity to that of IBV Strain Beaudette, and was only 50.8% homology to that of SARS coronavirus. The results showed that the genome of IBV has remarkable variation. And IBV Beijing isolate is not closely related to SARS coronavirus. Phylogenetic analyses based on the whole genome sequence, S protein, M protein and N protein, also showed that AIBV Beijing isolate is lone virus in group III and is distant from SARS coronavirus. In conclusion, this study will contribute to the studies of diagnosis and diseases control on IBV in China. Science in China Press 2004 /pmc/articles/PMC7089023/ /pubmed/32214717 http://dx.doi.org/10.1360/03wc0347 Text en © Science in China Press 2004 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Articles
Jin, Weiwu
Chen, Chen
Zhang, Ying
Zhao, Yiqiang
Feng, Jidong
Chen, Fuyong
Wu, Qingming
Yang, Hanchun
Wang, Ming
Yu, Jialin
Li, Ning
Gong, Yuanshi
Sun, Qixin
Chen, Zhangliang
Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus
title Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus
title_full Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus
title_fullStr Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus
title_full_unstemmed Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus
title_short Genome sequencing and characterization analysis of a Beijing isolate of chicken coronavirus infectious bronchitis virus
title_sort genome sequencing and characterization analysis of a beijing isolate of chicken coronavirus infectious bronchitis virus
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089023/
https://www.ncbi.nlm.nih.gov/pubmed/32214717
http://dx.doi.org/10.1360/03wc0347
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