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Homologous recombination shapes the genetic diversity of African swine fever viruses

机译:同源重组形状非洲猪瘟病毒的遗传多样性

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The African swine fever virus (ASFV) has severely influenced the swine industry of the world. Currently, there is no effective vaccine or drugs against the ASFV. How to effectively control the virus is challenging. In this study, we have analyzed all the publicly available ASFV genomes and demonstrated that there was a large genetic diversity of ASFV genomes. Interestingly, the genetic diversity was mainly caused by extensive genomic insertions and/or deletions (indels) instead of the point mutations. Further analyses showed that the indels may be attributed much to the homologous recombination, as supported by significant associations between the occurrence of extensive recombination events and the indels in the ASFV genomes. Besides, the homologous recombination also led to changes of gene content of ASFVs. Finally, repeated elements of dozens of nucleotides in length were observed to widely distribute and cluster in the adjacent positions of ASFV genomes, which may facilitate the occurrence of homologous recombination. This work highlighted the importance of homologous recombination in shaping the genetic diversity of the ASFVs, and could help understand the evolution of the virus.
机译:非洲猪瘟病毒(ASFV)严重影响了世界猪业。目前,没有有效的疫苗或药物对抗ASFV。如何有效控制病毒是挑战性的。在这项研究中,我们已经分析了所有公开可用的ASFV基因组,并证明了ASFV基因组的遗传多样性。有趣的是,遗传多样性主要是由广泛的基因组插入和/或缺失(诱导)而不是点突变引起的。进一步的分析表明,诱导可以归因于同源重组,如在ASFV基因组中的广泛重组事件和吲哚的发生之间的显着关联所支持的。此外,同源重组也导致ASFV的基因含量的变化。最后,观察到长度的数十个核苷酸的重复元素在ASFV基因组的相邻位置中广泛分布和簇,这可以促进同源重组的发生。这项工作强调了同源重组在塑造ASFV的遗传多样性方面的重要性,并且可以帮助了解病毒的演变。

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