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Co-circulation of H5N6 H3N2 H3N8 and Emergence of Novel Reassortant H3N6 in a Local Community in Hunan Province in China

机译:H5N6H3N2H3N8的共同流通和新型重配体H3N6在中国湖南省当地社区的出现

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摘要

Multiple infections of avian influenza viruses (AIVs) in poultry or wild birds contribute to the continued evolution of H5 subtype viruses in nature and provide potential recombination of AIVs of different origins. In this study, we carried out surveillance of AIVs in ducks, geese and the environment of a community in Hunan province, China, from 2014–2015. We isolated multiple co-circulated AIVs including H3N2, H3N8, and H5N6, and, most importantly, a novel reassortant: H3N6. Phylogenetic analyses suggest that H3N6 is highly likely derived from H5N6, which has recently been shown to have zoonotic potential with human infections. Studies with mammalian cell lines and a mouse model indicate that four selected AIVs of duck or goose origin can infect MDCK and A549 cells but have low pathogenicity in mice. We propose that a potential co-circulation of multiple subtypes including H5N6 in local area may result in the production of novel subtypes such as H3N6 by gene reassortment.
机译:家禽或野禽中多次感染禽流感病毒(AIV)有助于自然界中H5亚型病毒的持续进化,并提供了不同来源的AIV的潜在重组。在这项研究中,我们从2014年至2015年对中国湖南省鸭,鹅和社区环境进行了AIV监测。我们分离了多个共同流通的AIV,包括H3N2,H3N8和H5N6,最重要的是,一种新颖的重配体:H3N6。系统发育分析表明,H3N6很可能源自H5N6,最近已证明H5N6具有人类感染的人畜共患病潜力。对哺乳动物细胞系和小鼠模型的研究表明,鸭或鹅来源的四个选定的AIV可以感染MDCK和A549细胞,但在小鼠中的致病性较低。我们建议,包括亚型H5N6在内的多个亚型在局部区域的潜在共同流通可能导致通过基因重排产生新型亚型,例如H3N6。

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