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Using Non-Homogeneous Models of Nucleotide Substitution to Identify Host Shift Events: Application to the Origin of the 1918 ‘Spanish’ Influenza Pandemic Virus

机译:使用核苷酸替代的非均质模型确定宿主转移事件:在1918年西班牙流感大流行病毒起源中的应用

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摘要

Nonhomogeneous Markov models of nucleotide substitution have received scant attention. Here we explore the possibility of using nonhomogeneous models to identify host shift nodes along phylogenetic trees of pathogens evolving in different hosts. It has been noticed that influenza viruses show marked differences in nucleotide composition in human and avian hosts. We take advantage of this fact to identify the host shift event that led to the 1918 ‘Spanish’ influenza. This disease killed over 50 million people worldwide, ranking it as the deadliest pandemic in recorded history. Our model suggests that the eight RNA segments which eventually became the 1918 viral genome were introduced into a mammalian host around 1882–1913. The viruses later diverged into the classical swine and human H1N1 influenza lineages around 1913–1915. The last common ancestor of human strains dates from February 1917 to April 1918. Because pigs are more readily infected with avian influenza viruses than humans, it would seem that they were the original recipient of the virus. This would suggest that the virus was introduced into humans sometime between 1913 and 1918.
机译:核苷酸取代的非均质马尔可夫模型很少受到关注。在这里,我们探讨了使用非均质模型来沿着不同宿主中病原体的系统树识别宿主转移节点的可能性。已经注意到,流感病毒在人和禽类宿主中核苷酸组成上显示出明显的差异。我们利用这一事实来确定导致1918年“西班牙”流感的宿主转移事件。该病在全球范围内导致超过5000万人死亡,是有史以来最致命的大流行病。我们的模型表明,最终成为1918年病毒基因组的8个RNA片段在1882年至1913年左右被引入了哺乳动物宿主。病毒随后在1913至1915年间扩散到经典的猪和人类H1N1流感谱系中。人类毒株的最后一个祖先可追溯到1917年2月至1918年4月。由于猪比人更容易感染禽流感病毒,因此看来猪是该病毒的原始接受者。这表明该病毒是在1913年至1918年之间的某个时间被引入人类的。

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