Literature DB >> 24403589

Influenza H7N9 and H9N2 viruses: coexistence in poultry linked to human H7N9 infection and genome characteristics.

Xinfen Yu1, Tao Jin, Yujun Cui, Xiaoying Pu, Jun Li, Jin Xu, Guang Liu, Huijue Jia, Dan Liu, Shili Song, Yang Yu, Li Xie, Renjie Huang, Hua Ding, Yu Kou, Yinyan Zhou, Yayu Wang, Xun Xu, Ye Yin, Jian Wang, Chenyi Guo, Xianwei Yang, Liangping Hu, Xiaopeng Wu, Hailong Wang, Jun Liu, Guoqiu Zhao, Jiyong Zhou, Jingcao Pan, George F Gao, Ruifu Yang, Jun Wang.   

Abstract

UNLABELLED: Avian influenza virus A of the novel H7N9 reassortant subtype was recently found to cause severe human respiratory infections in China. Live poultry markets were suspected locations of the human H7N9 infection sources, based on the cases' exposure histories and sequence similarities between viral isolates. To explore the role of live poultry markets in the origin of the novel H7N9 virus, we systematically examined poultry and environmental specimens from local markets and farms in Hangzhou, using real-time reverse transcription-PCR (RT-PCR) as well as high-throughput next-generation sequencing (NGS). RT-PCR identified specimens positive for the H7 and N9 genomic segments in all of the 12 poultry markets epidemiologically linked to 10 human H7N9 cases. Chickens, ducks, and environmental specimens from the markets contained heavily mixed subtypes, including H7, N9, H9, and N2 and sometimes H5 and N1. The idea of the coexistence of H7N9 and H9N2 subtypes in chickens was further supported by metagenomic sequencing. In contrast, human H7N9 infection cases (n = 31) were all negative for H9N2 virus according to real-time RT-PCR. The six internal segments were indistinguishable for the H7N9 and H9N2 viruses. The H9, N2, and internal-segment sequences were very close to the sequence of the H9N2 virus circulating in chickens in China recently. Our results provide direct evidence that H9N2 strains coexisted with the novel human-pathogenic H7N9 influenza virus in epidemiologically linked live poultry markets. Avian influenza A virus of the H9N2 subtype likely made a recent contribution to the evolution of the H7N9 virus and continues to do so. IMPORTANCE: Our results suggest that avian influenza A virus of the H9N2 subtype likely made a recent contribution to the evolution of the H7N9 virus, a novel reassortant avian influenza virus A subtype, and continues to do so. The finding helps shed light on how the H7N9 virus emerged, spread, and transmitted to humans. It is of considerable interest for assessing the risk of the possible emergence of novel reassortant viruses with enhanced transmissibility to humans.

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Year:  2014        PMID: 24403589      PMCID: PMC3957952          DOI: 10.1128/JVI.02059-13

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  23 in total

1.  The influenza virus resource at the National Center for Biotechnology Information.

Authors:  Yiming Bao; Pavel Bolotov; Dmitry Dernovoy; Boris Kiryutin; Leonid Zaslavsky; Tatiana Tatusova; Jim Ostell; David Lipman
Journal:  J Virol       Date:  2007-10-17       Impact factor: 5.103

2.  SOAP2: an improved ultrafast tool for short read alignment.

Authors:  Ruiqiang Li; Chang Yu; Yingrui Li; Tak-Wah Lam; Siu-Ming Yiu; Karsten Kristiansen; Jun Wang
Journal:  Bioinformatics       Date:  2009-06-03       Impact factor: 6.937

3.  De novo assembly of human genomes with massively parallel short read sequencing.

Authors:  Ruiqiang Li; Hongmei Zhu; Jue Ruan; Wubin Qian; Xiaodong Fang; Zhongbin Shi; Yingrui Li; Shengting Li; Gao Shan; Karsten Kristiansen; Songgang Li; Huanming Yang; Jian Wang; Jun Wang
Journal:  Genome Res       Date:  2009-12-17       Impact factor: 9.043

4.  Universal primer set for the full-length amplification of all influenza A viruses.

Authors:  E Hoffmann; J Stech; Y Guan; R G Webster; D R Perez
Journal:  Arch Virol       Date:  2001-12       Impact factor: 2.574

5.  Single-reaction genomic amplification accelerates sequencing and vaccine production for classical and Swine origin human influenza a viruses.

Authors:  Bin Zhou; Matthew E Donnelly; Derek T Scholes; Kirsten St George; Masato Hatta; Yoshihiro Kawaoka; David E Wentworth
Journal:  J Virol       Date:  2009-07-15       Impact factor: 5.103

6.  Epidemiology of human infections with avian influenza A(H7N9) virus in China.

Authors:  Qun Li; Lei Zhou; Minghao Zhou; Zhiping Chen; Furong Li; Huanyu Wu; Nijuan Xiang; Enfu Chen; Fenyang Tang; Dayan Wang; Ling Meng; Zhiheng Hong; Wenxiao Tu; Yang Cao; Leilei Li; Fan Ding; Bo Liu; Mei Wang; Rongheng Xie; Rongbao Gao; Xiaodan Li; Tian Bai; Shumei Zou; Jun He; Jiayu Hu; Yangting Xu; Chengliang Chai; Shiwen Wang; Yongjun Gao; Lianmei Jin; Yanping Zhang; Huiming Luo; Hongjie Yu; Jianfeng He; Qi Li; Xianjun Wang; Lidong Gao; Xinghuo Pang; Guohua Liu; Yansheng Yan; Hui Yuan; Yuelong Shu; Weizhong Yang; Yu Wang; Fan Wu; Timothy M Uyeki; Zijian Feng
Journal:  N Engl J Med       Date:  2013-04-24       Impact factor: 91.245

7.  The Sequence Alignment/Map format and SAMtools.

Authors:  Heng Li; Bob Handsaker; Alec Wysoker; Tim Fennell; Jue Ruan; Nils Homer; Gabor Marth; Goncalo Abecasis; Richard Durbin
Journal:  Bioinformatics       Date:  2009-06-08       Impact factor: 6.937

8.  De novo bacterial genome sequencing: millions of very short reads assembled on a desktop computer.

Authors:  David Hernandez; Patrice François; Laurent Farinelli; Magne Osterås; Jacques Schrenzel
Journal:  Genome Res       Date:  2008-03-10       Impact factor: 9.043

9.  Fast and accurate short read alignment with Burrows-Wheeler transform.

Authors:  Heng Li; Richard Durbin
Journal:  Bioinformatics       Date:  2009-05-18       Impact factor: 6.937

10.  Analysis of hemagglutinin-mediated entry tropism of H5N1 avian influenza.

Authors:  Ying Guo; Emily Rumschlag-Booms; Jizhen Wang; Haixia Xiao; Jia Yu; Jianwei Wang; Li Guo; George F Gao; Youjia Cao; Michael Caffrey; Lijun Rong
Journal:  Virol J       Date:  2009-04-02       Impact factor: 4.099

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  56 in total

1.  Identification of a novel strain of influenza A (H9N2) virus in chicken.

Authors:  Ning Wang; Zheng Ruan; Yun Wan; Bo Wang; Si-Hua Zhang; Xing-Yi Ge
Journal:  Virol Sin       Date:  2015-08       Impact factor: 4.327

2.  Impact of route of exposure and challenge dose on the pathogenesis of H7N9 low pathogenicity avian influenza virus in chickens.

Authors:  Erica Spackman; Mary Pantin-Jackwood; David E Swayne; David L Suarez; Darrell R Kapczynski
Journal:  Virology       Date:  2015-02-06       Impact factor: 3.616

Review 3.  Pandemic potential of avian influenza A (H7N9) viruses.

Authors:  Tokiko Watanabe; Shinji Watanabe; Eileen A Maher; Gabriele Neumann; Yoshihiro Kawaoka
Journal:  Trends Microbiol       Date:  2014-09-25       Impact factor: 17.079

Review 4.  Genetic Adaptation of Influenza A Viruses in Domestic Animals and Their Potential Role in Interspecies Transmission: A Literature Review.

Authors:  Olga Munoz; Marco De Nardi; Karen van der Meulen; Kristien van Reeth; Marion Koopmans; Kate Harris; Sophie von Dobschuetz; Gudrun Freidl; Adam Meijer; Andrew Breed; Andrew Hill; Rowena Kosmider; Jill Banks; Katharina D C Stärk; Barbara Wieland; Kim Stevens; Sylvie van der Werf; Vincent Enouf; Gwenaelle Dauphin; William Dundon; Giovanni Cattoli; Ilaria Capua
Journal:  Ecohealth       Date:  2015-01-29       Impact factor: 3.184

5.  Cocirculation of three hemagglutinin and two neuraminidase subtypes of avian influenza viruses in Huzhou, China, April 2013: implication for the origin of the novel H7N9 virus.

Authors:  Jiankang Han; Lili Wang; Jia Liu; Meihua Jin; Fangyuan Hao; Peng Zhang; Zhao Zhang; Dong Wen; Xiaofang Wu; Guangtao Liu; Lei Ji; Deshun Xu; Dongming Zhou; Qibin Leng; Ke Lan; Chiyu Zhang
Journal:  J Virol       Date:  2014-03-12       Impact factor: 5.103

6.  Unexpected Interfarm Transmission Dynamics during a Highly Pathogenic Avian Influenza Epidemic.

Authors:  Alice Fusaro; Luca Tassoni; Adelaide Milani; Joseph Hughes; Annalisa Salviato; Pablo R Murcia; Paola Massi; Gianpiero Zamperin; Lebana Bonfanti; Stefano Marangon; Giovanni Cattoli; Isabella Monne
Journal:  J Virol       Date:  2016-06-24       Impact factor: 5.103

7.  Reassortment with dominant chicken H9N2 influenza virus contributed to the fifth H7N9 virus human epidemic.

Authors:  Juan Pu; Yanbo Yin; Jiyu Liu; Xinyu Wang; Yong Zhou; Zejiang Wang; Yipeng Sun; Honglei Sun; Fangtao Li; Jingwei Song; Runkang Qu; Weihua Gao; Dongdong Wang; Zhen Wang; Shijie Yan; Mingyue Chen; Jinfeng Zeng; Zhimin Jiang; Haoran Sun; Yanan Zong; Chenxi Wang; Qi Tong; Yuhai Bi; Yinhua Huang; Xiangjun Du; Kin-Chow Chang; Jinhua Liu
Journal:  J Virol       Date:  2021-03-17       Impact factor: 5.103

8.  H9N2 avian influenza virus retained low pathogenicity after serial passage in chickens.

Authors:  Akinlolu Jegede; Qigao Fu; Yohannes Berhane; Min Lin; Ashok Kumar; Jiewen Guan
Journal:  Can J Vet Res       Date:  2018-04       Impact factor: 1.310

9.  Interferon Inducer IFI35 regulates RIG-I-mediated innate antiviral response through mutual antagonism with Influenza protein NS1.

Authors:  Hui Yang; Wendy Winkler; Xiaopeng Wu
Journal:  J Virol       Date:  2021-03-10       Impact factor: 5.103

Review 10.  Deep sequencing: becoming a critical tool in clinical virology.

Authors:  Miguel E Quiñones-Mateu; Santiago Avila; Gustavo Reyes-Teran; Miguel A Martinez
Journal:  J Clin Virol       Date:  2014-06-24       Impact factor: 3.168

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