首页> 外文期刊>The Korean Journal of Parasitology >Evolutionary course of CsRn1 long-terminal-repeat retrotransposon and its heterogeneous integrations into the genome of the liver fluke, Clonorchis sinensis
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Evolutionary course of CsRn1 long-terminal-repeat retrotransposon and its heterogeneous integrations into the genome of the liver fluke, Clonorchis sinensis

机译:CsRn1长末端重复反转录转座子的进化历程及其异质整合到肝吸虫(Clonorchis sinensis)基因组中

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The evolutionary course of the CsRn1 long-terminal-repeat (LTR) retrotransposon was predicted by conducting a phylogenetic analysis with its paralog LTR sequences. Based on the clustering patterns in the phylogenetic tree, multiple CsRn1 copies could be grouped into four subsets, which were shown to have different integration times. Their differential sequence divergences and heterogeneous integration patterns strongly suggested that these subsets appeared sequentially in the genome of C. sinensis. Members of recently expanding subset showed the lowest level of divergence in their LTR and reverse transcriptase gene sequences. They were also shown to be highly polymorphic among individual genomes of the trematode. The CsRn1 element exhibited a preference for repetitive, agenic chromosomal regions in terms of selecting integration targets. Our results suggested that CsRn1 might induce a considerable degree of intergenomic variation and, thereby, have influenced the evolution of the C. sinensis genome.
机译:CsRn1长末端重复(LTR)逆转座子的进化过程是通过对其同源物LTR序列进行系统发育分析来预测的。根据系统发育树中的聚类模式,可以将多个CsRn1副本分组为四个子集,这些子集显示出不同的整合时间。它们的差异序列差异和异质整合模式强烈表明,这些子集顺序出现在中华绒螯蟹的基因组中。最近扩展的子集的成员在其LTR和逆转录酶基因序列中显示出最低水平的差异。它们还被证明在吸虫的各个基因组中具有高度多态性。就选择整合靶点而言,CsRn1元件表现出对重复的非基因染色体区域的偏好。我们的结果表明,CsRn1可能诱导相当程度的基因组变异,从而影响了中华绒螯蟹的基因组进化。

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