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A novel web-based TinT application and the chronology of the Primate Alu retroposon activity

机译:一种新颖的基于Web的TinT应用程序和灵长类动物Alu逆转座子活动的年表

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摘要

BackgroundDNA sequences afford access to the evolutionary pathways of life. Particularly mobile elements that constantly co-evolve in genomes encrypt recent and ancient information of their host's history. In mammals there is an extraordinarily abundant activity of mobile elements that occurs in a dynamic succession of active families, subfamilies, types, and subtypes of retroposed elements. The high frequency of retroposons in mammals implies that, by chance, such elements also insert into each other. While inactive elements are no longer able to retropose, active elements retropose by chance into other active and inactive elements. Thousands of such directional, element-in-element insertions are found in present-day genomes. To help analyze these events, we developed a computational algorithm (Transpositions in Transpositions, or TinT) that examines the different frequencies of nested transpositions and reconstructs the chronological order of retroposon activities.
机译:背景DNA序列提供了进入生命进化途径的途径。特别是不断在基因组中共同进化的移动元件会加密其宿主历史的最新和古代信息。在哺乳动物中,活动元素异常丰富,活动元素的动态家族,亚家族,类型和亚型动态连续地发生。哺乳动物中逆转录子的高频率暗示,偶然地,这些元件也彼此插入。尽管非活动元素不再能够重新布置,但活动元素偶然地重新布置为其他活动和非活动元素。在当今的基因组中发现了成千上万个这种定向的元素插入。为了帮助分析这些事件,我们开发了一种计算算法(“换位”中的“换位”或TinT),该算法检查嵌套换位的不同频率并重建反座子活动的时间顺序。

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