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A systematic identification of Kolobok superfamily transposons in Trichomonas vaginalis and sequence analysis on related transposases

A systematic identification of Kolobok superfamily transposons in Trichomonas vaginalis and sequence analysis on related transposases
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摘要 Transposons are sequence elements widely distributed among genomes of all three kingdoms of life, providing genomic changes and playing significant roles in genome evolution. Trichomonas vaginalis is an excellent model system for transposon study since its genome (- 160 Mb) has been sequenced and is composed of - 65% transposons and other repetitive elements. In this study, we primarily report the identification of Kolobok-type transposons (termed tvBac) in T. vaginalis and the results of transposase sequence analysis. We categorized 24 novel subfamilies of the Kolobok element, including one autonomous subfamily and 23 non-autonomous subfamilies. We also identified a novel H2CH motif in tvBac transposases based on multiple sequence alignment. In addition, we supposed that tvBac and Mutator transposons may have evolved independently from a common ancestor according to our phylogenetic analysis. Our results provide basic information for the understanding of the function and evolution of tvBac transposons in particular and other related transposon families in general. Transposons are sequence elements widely distributed among genomes of all three kingdoms of life, providing genomic changes and playing significant roles in genome evolution. Trichomonas vaginalis is an excellent model system for transposon study since its genome (- 160 Mb) has been sequenced and is composed of - 65% transposons and other repetitive elements. In this study, we primarily report the identification of Kolobok-type transposons (termed tvBac) in T. vaginalis and the results of transposase sequence analysis. We categorized 24 novel subfamilies of the Kolobok element, including one autonomous subfamily and 23 non-autonomous subfamilies. We also identified a novel H2CH motif in tvBac transposases based on multiple sequence alignment. In addition, we supposed that tvBac and Mutator transposons may have evolved independently from a common ancestor according to our phylogenetic analysis. Our results provide basic information for the understanding of the function and evolution of tvBac transposons in particular and other related transposon families in general.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2011年第2期63-70,共8页 遗传学报(英文版)
基金 supported by grants from the National Basic Research Program(973 Program)(Nos.2006CB910401, 2006CB910403 and 2006CB910404) awarded to JY and HS the Chinese Ministry of Science and Technology,the National Science and Technology Key Project(No. 2008ZX10004-013) awarded to JY
关键词 Trichomonas vaginalis TRANSPOSASE Kolobok tvBac Trichomonas vaginalis Transposase Kolobok tvBac
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