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Homologous Recombination as an Evolutionary Force in the Avian Influenza A Virus

机译:同源重组作为甲型禽流感病毒的进化力量

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摘要

Avian influenza A viruses (AIVs), including the H5N1, H9N2, and H7N7 subtypes, have been directly transmitted to humans, raising concerns over the possibility of a new influenza pandemic. To prevent a future avian influenza pandemic, it is very important to fully understand the molecular basis driving the change in AIV virulence and host tropism. Although virulent variants of other viruses have been generated by homologous recombination, the occurrence of homologous recombination within AIV segments is controversial and far from proven. This study reports three circulating H9N2 AIVs with similar mosaic PA genes descended from H9N2 and H5N1. Additionally, many homologous recombinants are also found deposited in GenBank. Recombination events can occur in PB2, PB1, PA, HA, and NP segments and between lineages of the same/different serotype. These results collectively demonstrate that intragenic recombination plays a role in driving the evolution of AIVs, potentially resulting in effects on AIV virulence and host tropism changes.
机译:包括H5N1,H9N2和H7N7亚型的甲型禽流感病毒(AIV)已直接传播给人类,引起了人们对新的流感大流行可能性的担忧。为了防止将来发生禽流感大流行,充分了解驱动AIV毒力和宿主嗜性变化的分子基础非常重要。尽管通过同源重组已经产生了其他病毒的强毒变异体,但在AIV片段中同源重组的发生仍是有争议的,远未得到证实。这项研究报告了三个循环的H9N2 AIV,它们具有相似的镶嵌PA基因,分别来自H9N2和H5N1。另外,还发现许多同源重组体保藏在GenBank中。重组事件可能发生在PB2,PB1,PA,HA和NP段中,以及相同/不同血清型的谱系之间。这些结果共同证明,基因内重组在驱动AIV的进化中发挥作用,可能对AIV毒力和宿主嗜性的改变产生影响。

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