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An RNA-dependent RNA polymerase gene in bat genomes derived from an ancient negative-strand RNA virus

机译:蝙蝠基因组中一种依赖于RNA的RNA聚合酶基因来自古老的负链RNA病毒

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摘要

Endogenous bornavirus-like L (EBLL) elements are inheritable sequences derived from ancient bornavirus L genes that encode a viral RNA-dependent RNA polymerase (RdRp) in many eukaryotic genomes. Here, we demonstrate that bats of the genus Eptesicus have preserved for more than 11.8 million years an EBLL element named eEBLL-1, which has an intact open reading frame of 1,718 codons. The eEBLL-1 coding sequence revealed that functional motifs essential for mononegaviral RdRp activity are well conserved in the EBLL-1 genes. Genetic analyses showed that natural selection operated on eEBLL-1 during the evolution of Eptesicus. Notably, we detected efficient transcription of eEBLL-1 in tissues from Eptesicus bats. To the best of our knowledge, this study is the first report showing that the eukaryotic genome has gained a riboviral polymerase gene from an ancient virus that has the potential to encode a functional RdRp.
机译:内源性博大病毒样L(EBLL)元件是源自古代博大病毒L基因的可继承序列,该基因在许多真核基因组中编码病毒依赖RNA的RNA聚合酶(RdRp)。在这里,我们证明了Eptesicus的蝙蝠已经将名为eEBLL-1的EBLL元件保存了超过1180万年,其完整的开放阅读框为1,718个密码子。 eEBLL-1编码序列显示,单负病毒RdRp活性必不可少的功能性基序在EBLL-1基因中非常保守。遗传分析表明,在Eptesicus进化过程中,自然选择对eEBLL-1起作用。值得注意的是,我们检测到了Eptesicus蝙蝠组织中eEBLL-1的有效转录。据我们所知,该研究是第一份报告,表明真核生物基因组已从一种古老的病毒中获得了核糖病毒聚合酶基因,该基因具有编码功能性RdRp的潜力。

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