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Dynamic reassortments and genetic heterogeneity of the human-infecting influenza A (H7N9) virus

机译:人类感染甲型H7N9病毒的动态重排和遗传异质性

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Influenza A (H7N9) virus has been causing human infections in China since February 2013, raising serious concerns of potential pandemics. Previous studies demonstrate that human infection is directly linked to live animal markets, and that the internal genes of the virus are derived from H9N2 viruses circulating in the Yangtze River Delta area in Eastern China. Here following analysis of 109 viruses, we show a much higher genetic heterogeneity of the H7N9 viruses than previously reported, with a total of 27 newly designated genotypes. Phylogenetic and genealogical inferences reveal that genotypes G0 and G2.6 dominantly co-circulate within poultry, with most human isolates belonging to the genotype G0. G0 viruses are also responsible for the inter- and intra-province transmissions, leading to the genesis of novel genotypes. These observations suggest the province-specific H9N2 virus gene pools increase the genetic diversity of H7N9 via dynamic reassortments and also imply that G0 has not gained overwhelming fitness and the virus continues to undergo reassortment.
机译:自2013年2月以来,甲型H7N9流感病毒一直在中国引起人类感染,引起人们对潜在大流行病的严重关注。先前的研究表明,人类感染与活体动物市场直接相关,并且该病毒的内部基因源自中国东部长江三角洲地区流行的H9N2病毒。在对109种病毒进行分析之后,我们发现H7N9病毒的遗传异质性比以前报道的要高得多,共有27种新指定的基因型。系统发育学和家谱推断表明,基因型G0和G2.6在家禽中主要是共同循环的,大多数人类分离株都属于基因型G0。 G0病毒还负责省间和省内传播,从而导致了新基因型的产生。这些观察结果表明,该省特有的H9N2病毒基因库通过​​动态重排增加了H7N9的遗传多样性,也暗示G0尚未获得压倒性的适应性,并且该病毒继续进行重排。

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