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Two Persistent Line-1 Lineages in Peromyscus Have Unequal Rates of Evolution

机译:Peromyscus中的两个持久的Line-1世系具有不相等的进化速率

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摘要

LINE-1, the major family of long, interspersed repeats in the mammalian genome, moves via an RNA intermediate and encodes its own reverse transcriptase. Comparative sequence analysis was used to reconstruct the phylogenetic history of LINE-1 dynamics in the deer mouse, Peromyscus. As is the case in Mus and Rattus, a very small number of active templates produce the majority of LINE-1 copies in Peromyscus. However, in contrast to the single LINE-1 lineage seen in the muroid rodents, Peromyscus has at least two LINE-1 lineages whose most recent common ancestor probably existed before the peromyscine radiation. Species-specific variants of Lineage 1, and intact open reading frames in the youngest elements of both Lineages 1 and 2, suggest that both lineages have remained active within the same genome. The higher number of shared-sequence variants in Lineage 1 relative to Lineage 2 suggests that Lineage 1 has replaced its master template much more frequently than Lineage 2 or that the reverse transcriptase Lineage 1 is more error prone. The implications of the method used to acquire LINE-1 sequences for analysis are discussed.
机译:LINE-1是哺乳动物基因组中较长的散布重复序列的主要家族,可通过RNA中间体移动并编码其自身的逆转录酶。比较序列分析用于重建鹿小鼠Peromyscus LINE-1动态的系统进化史。像Mus和Rattus一样,Peromyscus中很少有活性模板产生大部分LINE-1拷贝。但是,与在鼠类啮齿动物中看到的单个LINE-1谱系相反,Peromyscus具有至少两个LINE-1谱系,它们的最新共同祖先可能存在于Peromyscine辐射之前。谱系1的物种特定变体,以及谱系1和2的最年轻元素中完整的开放阅读框,表明这两个谱系在同一基因组内仍然保持活性。相对于谱系2,谱系1中共享序列变体的数量更高,表明谱系1比谱系2更频繁地替换了其主模板,或者说逆转录酶谱系1更容易出错。讨论了用于获取LINE-1序列进行分析的方法的含义。

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