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Comprehensive Phylogenetic Reconstructions of African Swine Fever Virus: Proposal for a New Classification and Molecular Dating of the Virus

机译:非洲猪瘟病毒的全面系统发育重建:对该病毒的新分类和分子日期的建议

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摘要

African swine fever (ASF) is a highly lethal disease of domestic pigs caused by the only known DNA arbovirus. It was first described in Kenya in 1921 and since then many isolates have been collected worldwide. However, although several phylogenetic studies have been carried out to understand the relationships between the isolates, no molecular dating analyses have been achieved so far. In this paper, comprehensive phylogenetic reconstructions were made using newly generated, publicly available sequences of hundreds of ASFV isolates from the past 70 years. Analyses focused on B646L, CP204L, and E183L genes from 356, 251, and 123 isolates, respectively. Phylogenetic analyses were achieved using maximum likelihood and Bayesian coalescence methods. A new lineage-based nomenclature is proposed to designate 35 different clusters. In addition, dating of ASFV origin was carried out from the molecular data sets. To avoid bias, diversity due to positive selection or recombination events was neutralized. The molecular clock analyses revealed that ASFV strains currently circulating have evolved over 300 years, with a time to the most recent common ancestor (TMRCA) in the early 18th century.
机译:非洲猪瘟(ASF)是由唯一已知的DNA虫媒病毒引起的家猪的高致死性疾病。它于1921年在肯尼亚首次被描述,此后在世界范围内收集了许多分离株。但是,尽管已经进行了一些系统发育研究来了解分离株之间的关系,但到目前为止尚未进行分子测年分析。在本文中,使用了过去70年来数百种ASFV分离株的新生成的,可公开获得的序列,进行了全面的系统发育重建。分析分别针对来自356、251和123个分离株的B646L,CP204L和E183L基因。系统发育分析是使用最大似然法和贝叶斯合并方法实现的。提出了一种新的基于谱系的命名法来指定35个不同的聚类。此外,从分子数据集进行了ASFV起源的年代测定。为了避免偏差,消除了由于阳性选择或重组事件引起的多样性。分子钟分析表明,目前正在传播的ASFV菌株已经进化了300多年,并在18世纪初达到了最近的祖先(TMRCA)。

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