Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.

The H7N9 avian influenza virus (AIV) that emerged in China have caused five waves of human infection. Further human cases have been successfully prevented since September 2017 through the use of an H7N9 vaccine in poultry. However, the H7N9 AIV has not been eradicated from poultry in China, and its...

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Main Authors: Xin Yin, Guohua Deng, Xianying Zeng, Pengfei Cui, Yujie Hou, Yanjing Liu, Jingzhen Fang, Shuxin Pan, Dongxue Wang, Xiaohan Chen, Yaping Zhang, Xiurong Wang, Guobin Tian, Yanbing Li, Yan Chen, Liling Liu, Yasuo Suzuki, Yuntao Guan, Chengjun Li, Jianzhong Shi, Hualan Chen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-04-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1009561
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spelling doaj-6af30b2a85bd401280d980b13737c3ce2021-08-13T04:30:52ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742021-04-01174e100956110.1371/journal.ppat.1009561Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.Xin YinGuohua DengXianying ZengPengfei CuiYujie HouYanjing LiuJingzhen FangShuxin PanDongxue WangXiaohan ChenYaping ZhangXiurong WangGuobin TianYanbing LiYan ChenLiling LiuYasuo SuzukiYuntao GuanChengjun LiJianzhong ShiHualan ChenThe H7N9 avian influenza virus (AIV) that emerged in China have caused five waves of human infection. Further human cases have been successfully prevented since September 2017 through the use of an H7N9 vaccine in poultry. However, the H7N9 AIV has not been eradicated from poultry in China, and its evolution remains largely unexplored. In this study, we isolated 19 H7N9 AIVs during surveillance and diagnosis from February 2018 to December 2019, and genetic analysis showed that these viruses have formed two different genotypes. Animal studies indicated that the H7N9 viruses are highly lethal to chicken, cause mild infection in ducks, but have distinct pathotypes in mice. The viruses bound to avian-type receptors with high affinity, but gradually lost their ability to bind to human-type receptors. Importantly, we found that H7N9 AIVs isolated in 2019 were antigenically different from the H7N9 vaccine strain that was used for H7N9 influenza control in poultry, and that replication of these viruses cannot, therefore, be completely prevented in vaccinated chickens. We further revealed that two amino acid mutations at positions 135 and 160 in the HA protein added two glycosylation sites and facilitated the escape of the H7N9 viruses from the vaccine-induced immunity. Our study provides important insights into H7N9 virus evolution and control.https://doi.org/10.1371/journal.ppat.1009561
collection DOAJ
language English
format Article
sources DOAJ
author Xin Yin
Guohua Deng
Xianying Zeng
Pengfei Cui
Yujie Hou
Yanjing Liu
Jingzhen Fang
Shuxin Pan
Dongxue Wang
Xiaohan Chen
Yaping Zhang
Xiurong Wang
Guobin Tian
Yanbing Li
Yan Chen
Liling Liu
Yasuo Suzuki
Yuntao Guan
Chengjun Li
Jianzhong Shi
Hualan Chen
spellingShingle Xin Yin
Guohua Deng
Xianying Zeng
Pengfei Cui
Yujie Hou
Yanjing Liu
Jingzhen Fang
Shuxin Pan
Dongxue Wang
Xiaohan Chen
Yaping Zhang
Xiurong Wang
Guobin Tian
Yanbing Li
Yan Chen
Liling Liu
Yasuo Suzuki
Yuntao Guan
Chengjun Li
Jianzhong Shi
Hualan Chen
Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.
PLoS Pathogens
author_facet Xin Yin
Guohua Deng
Xianying Zeng
Pengfei Cui
Yujie Hou
Yanjing Liu
Jingzhen Fang
Shuxin Pan
Dongxue Wang
Xiaohan Chen
Yaping Zhang
Xiurong Wang
Guobin Tian
Yanbing Li
Yan Chen
Liling Liu
Yasuo Suzuki
Yuntao Guan
Chengjun Li
Jianzhong Shi
Hualan Chen
author_sort Xin Yin
title Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.
title_short Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.
title_full Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.
title_fullStr Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.
title_full_unstemmed Genetic and biological properties of H7N9 avian influenza viruses detected after application of the H7N9 poultry vaccine in China.
title_sort genetic and biological properties of h7n9 avian influenza viruses detected after application of the h7n9 poultry vaccine in china.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2021-04-01
description The H7N9 avian influenza virus (AIV) that emerged in China have caused five waves of human infection. Further human cases have been successfully prevented since September 2017 through the use of an H7N9 vaccine in poultry. However, the H7N9 AIV has not been eradicated from poultry in China, and its evolution remains largely unexplored. In this study, we isolated 19 H7N9 AIVs during surveillance and diagnosis from February 2018 to December 2019, and genetic analysis showed that these viruses have formed two different genotypes. Animal studies indicated that the H7N9 viruses are highly lethal to chicken, cause mild infection in ducks, but have distinct pathotypes in mice. The viruses bound to avian-type receptors with high affinity, but gradually lost their ability to bind to human-type receptors. Importantly, we found that H7N9 AIVs isolated in 2019 were antigenically different from the H7N9 vaccine strain that was used for H7N9 influenza control in poultry, and that replication of these viruses cannot, therefore, be completely prevented in vaccinated chickens. We further revealed that two amino acid mutations at positions 135 and 160 in the HA protein added two glycosylation sites and facilitated the escape of the H7N9 viruses from the vaccine-induced immunity. Our study provides important insights into H7N9 virus evolution and control.
url https://doi.org/10.1371/journal.ppat.1009561
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