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Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022

Since 2005, novel duck reoviruses have been outbreaks in duck breeding areas such as central China and South China. In recent years, the incidence rate of this disease is still increasing, bringing serious economic losses to waterfowl breeding industry. This study isolated 3 novel duck reoviruses (N...

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Autores principales: Zhang, Tingting, Wang, Xiuyuan, Jiang, Wansi, Fan, Xiaole, Liu, Nan, Miao, Runchun, Zhai, Xinyu, Wei, Liangmeng, Jiao, Peirong, Jiang, Shijin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10440558/
https://www.ncbi.nlm.nih.gov/pubmed/37566967
http://dx.doi.org/10.1016/j.psj.2023.102969
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author Zhang, Tingting
Wang, Xiuyuan
Jiang, Wansi
Fan, Xiaole
Liu, Nan
Miao, Runchun
Zhai, Xinyu
Wei, Liangmeng
Jiao, Peirong
Jiang, Shijin
author_facet Zhang, Tingting
Wang, Xiuyuan
Jiang, Wansi
Fan, Xiaole
Liu, Nan
Miao, Runchun
Zhai, Xinyu
Wei, Liangmeng
Jiao, Peirong
Jiang, Shijin
author_sort Zhang, Tingting
collection PubMed
description Since 2005, novel duck reoviruses have been outbreaks in duck breeding areas such as central China and South China. In recent years, the incidence rate of this disease is still increasing, bringing serious economic losses to waterfowl breeding industry. This study isolated 3 novel duck reoviruses (NDRV-SDLS, NDRV-SDWF, and NDRV-SDYC) from sick ducks in 3 local duck farms in Shandong Province. The study aimed to investigate the characteristics of these viruses. The virus is inoculated into duck embryo fibroblasts, where the virus replicates to produce syncytium and dies within 3 to 5 d. The viruses were also isolated from infected ducks, and RT-PCR amplified the whole genomes after passage purification in duck embryos. The resulting whole genome was analyzed for genetic evolution. The total length of the gene sequencing was 23,418 bp, divided into 10 fragments. Gene sequence comparison showed that the 3 strains had high similarity with novel duck reoviruses (NDRV) but low similarity with chicken-origin reovirus (chicken ARV) and Muscovy duck reovirus (MDRV), especially in the σC segment. Phylogenetic analysis of the 10 fragments showed that the 3 isolates constituted the same evolutionary clade as other DRV reference strains and were far related to ARV and MDRV in different evolutionary clades. The results of all 10 segments indicate that the isolates are in the evolutionary branch of NDRV, suggesting that the novel waterfowl reovirus is the dominant circulating strain in Shandong. This study complements the gene bank information of NDRV and provides references for vaccine research and disease prediction of NDRV in Shandong.
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spelling pubmed-104405582023-08-22 Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022 Zhang, Tingting Wang, Xiuyuan Jiang, Wansi Fan, Xiaole Liu, Nan Miao, Runchun Zhai, Xinyu Wei, Liangmeng Jiao, Peirong Jiang, Shijin Poult Sci GENETICS AND MOLECULAR BIOLOGY Since 2005, novel duck reoviruses have been outbreaks in duck breeding areas such as central China and South China. In recent years, the incidence rate of this disease is still increasing, bringing serious economic losses to waterfowl breeding industry. This study isolated 3 novel duck reoviruses (NDRV-SDLS, NDRV-SDWF, and NDRV-SDYC) from sick ducks in 3 local duck farms in Shandong Province. The study aimed to investigate the characteristics of these viruses. The virus is inoculated into duck embryo fibroblasts, where the virus replicates to produce syncytium and dies within 3 to 5 d. The viruses were also isolated from infected ducks, and RT-PCR amplified the whole genomes after passage purification in duck embryos. The resulting whole genome was analyzed for genetic evolution. The total length of the gene sequencing was 23,418 bp, divided into 10 fragments. Gene sequence comparison showed that the 3 strains had high similarity with novel duck reoviruses (NDRV) but low similarity with chicken-origin reovirus (chicken ARV) and Muscovy duck reovirus (MDRV), especially in the σC segment. Phylogenetic analysis of the 10 fragments showed that the 3 isolates constituted the same evolutionary clade as other DRV reference strains and were far related to ARV and MDRV in different evolutionary clades. The results of all 10 segments indicate that the isolates are in the evolutionary branch of NDRV, suggesting that the novel waterfowl reovirus is the dominant circulating strain in Shandong. This study complements the gene bank information of NDRV and provides references for vaccine research and disease prediction of NDRV in Shandong. Elsevier 2023-07-26 /pmc/articles/PMC10440558/ /pubmed/37566967 http://dx.doi.org/10.1016/j.psj.2023.102969 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle GENETICS AND MOLECULAR BIOLOGY
Zhang, Tingting
Wang, Xiuyuan
Jiang, Wansi
Fan, Xiaole
Liu, Nan
Miao, Runchun
Zhai, Xinyu
Wei, Liangmeng
Jiao, Peirong
Jiang, Shijin
Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022
title Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022
title_full Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022
title_fullStr Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022
title_full_unstemmed Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022
title_short Research Note: Genetic characterization of novel duck reoviruses from Shandong Province, China in 2022
title_sort research note: genetic characterization of novel duck reoviruses from shandong province, china in 2022
topic GENETICS AND MOLECULAR BIOLOGY
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10440558/
https://www.ncbi.nlm.nih.gov/pubmed/37566967
http://dx.doi.org/10.1016/j.psj.2023.102969
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