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2016-2019 年期间中国流感病毒主要亚型的转变。

Dominant subtype switch in avian influenza viruses during 2016-2019 in China.

机构信息

CAS Key Laboratory of Pathogenic Microbiology and Immunology, Institute of Microbiology, Center for Influenza Research and Early-warning (CASCIRE), CAS-TWAS Center of Excellence for Emerging Infectious Diseases (CEEID, Chinese Academy of Sciences, 100101, Beijing, China.

University of Chinese Academy of Sciences, 101408, Beijing, China.

出版信息

Nat Commun. 2020 Nov 20;11(1):5909. doi: 10.1038/s41467-020-19671-3.

Abstract

We have surveyed avian influenza virus (AIV) genomes from live poultry markets within China since 2014. Here we present a total of 16,091 samples that were collected from May 2016 to February 2019 in 23 provinces and municipalities in China. We identify 2048 AIV-positive samples and perform next generation sequencing. AIV-positive rates (12.73%) from samples had decreased substantially since 2016, compared to that during 2014-2016 (26.90%). Additionally, H9N2 has replaced H5N6 and H7N9 as the dominant AIV subtype in both chickens and ducks. Notably, novel reassortants and variants continually emerged and disseminated in avian populations, including H7N3, H9N9, H9N6 and H5N6 variants. Importantly, almost all of the H9 AIVs and many H7N9 and H6N2 strains prefer human-type receptors, posing an increased risk for human infections. In summary, our nation-wide surveillance highlights substantial changes in the circulation of AIVs since 2016, which greatly impacts the prevention and control of AIVs in China and worldwide.

摘要

自 2014 年以来,我们调查了中国活禽市场中的禽流感病毒 (AIV) 基因组。在此,我们共呈现了 2016 年 5 月至 2019 年 2 月期间在中国 23 个省、直辖市采集的 16091 个样本。我们鉴定出了 2048 个 AIV 阳性样本并进行了下一代测序。与 2014-2016 年(26.90%)相比,自 2016 年以来,样本中的 AIV 阳性率(12.73%)已大幅下降。此外,H9N2 已取代 H5N6 和 H7N9 成为鸡和鸭中主要的 AIV 亚型。值得注意的是,新型重配体和变体不断在禽群中出现和传播,包括 H7N3、H9N9、H9N6 和 H5N6 变体。重要的是,几乎所有的 H9 AIV 以及许多 H7N9 和 H6N2 株均偏好人类型受体,这增加了人类感染的风险。总之,我们的全国性监测突出了自 2016 年以来 AIV 循环的重大变化,这极大地影响了中国乃至全球 AIV 的预防和控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c90/7679419/1e2eefd7ef4d/41467_2020_19671_Fig1_HTML.jpg

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