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"intergenomic polymorphism"

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"intergenomic polymorphism"

Original Article

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.

Citations

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  • Recurrent emergence of structural variants of LTR retrotransposon CsRn1 evolving novel expression strategy and their selective expansion in a carcinogenic liver fluke, Clonorchis sinensis
    Seon-Hee Kim, Yoon Kong, Young-An Bae
    Molecular and Biochemical Parasitology.2017; 214: 14.     CrossRef
  • Genomics and transcriptomics of the Chinese liver fluke Clonorchis sinensis (Opisthorchiidae, Trematoda)
    G. N. Chelomina
    Molecular Biology.2017; 51(2): 184.     CrossRef
  • Egg-specific expression of protein with DNA methyltransferase activity in the biocarcinogenic liver fluke Clonorchis sinensis
    SEON-HEE KIM, HYE-JEONG CHO, WOON-MOK SOHN, CHUN-SEOB AHN, YOON KONG, HYUN-JONG YANG, YOUNG-AN BAE
    Parasitology.2015; 142(9): 1228.     CrossRef
  • Progress on the transcriptomics of carcinogenic liver flukes of humans—Unique biological and biotechnological prospects
    Neil D. Young, Aaron R. Jex, Cinzia Cantacessi, Bronwyn E. Campbell, Thewarach Laha, Woon-Mok Sohn, Banchob Sripa, Alex Loukas, Paul J. Brindley, Robin B. Gasser
    Biotechnology Advances.2010; 28(6): 859.     CrossRef
  • The biology and evolution of transposable elements in parasites
    M. Carmen Thomas, Francisco Macias, Carlos Alonso, Manuel C. López
    Trends in Parasitology.2010; 26(7): 350.     CrossRef
  • Functional Genes and Proteins of Clonorchis sinensis
    Tae Im Kim, Byoung-Kuk Na, Sung-Jong Hong
    The Korean Journal of Parasitology.2009; 47(Suppl): S59.     CrossRef
  • Molecular genetic profiles among individual Clonorchis sinensis adults collected from cats in two geographic regions of China revealed by RAPD and MGE-PCR methods
    De-Hua Lai, Qiao-Ping Wang, Wen Chen, Lian-Shun Cai, Zhong-Dao Wu, Xing-Quan Zhu, Zhao-Rong Lun
    Acta Tropica.2008; 107(2): 213.     CrossRef
  • PwRn1, a novel Ty3/gypsy-like retrotransposon of Paragonimus westermani: molecular characters and its differentially preserved mobile potential according to host chromosomal polyploidy
    Young-An Bae, Jong-Sook Ahn, Seon-Hee Kim, Mun-Gan Rhyu, Yoon Kong, Seung-Yull Cho
    BMC Genomics.2008;[Epub]     CrossRef
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