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Multiple massive domestication and recent amplification of Kolobok superfamily transposons in the clawed frog Xenopus

机译:爪蛙非洲爪蟾中Kolobok超家族转座子的大量大规模驯化和最近扩增

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摘要

BackgroundDNA transposons are generally destroyed by mutations and have short lifespans in hosts, as they are neutral or harmful to the host and therefore not conserved by natural selection. The clawed frog Xenopus harbors many DNA transposons and certain families, such as T2-MITE, have extremely long lives. These have ancient origins, but have shown recent transposition activity. In addition, certain transposase genes may have been “domesticated” by Xenopus and conserved over long time periods by natural selection. The aim of this study was to elucidate the evolutionary interactions between the host and the long-lived DNA transposon family it contains. Here, we investigated the molecular evolution of the Kolobok DNA transposon superfamily. Kolobok is thought to contribute to T2-MITE transposition.
机译:背景DNA转座子通常被突变破坏并且在宿主中具有较短的寿命,因为它们对宿主是中性的或有害的,因此不是自然选择所保守的。爪蛙非洲爪蟾拥有许多DNA转座子,某些家族(例如T2-MITE)的寿命极长。这些具有古老的起源,但是显示了最近的转座活性。另外,某些转座酶基因可能已被非洲爪蟾“驯化”,并通过自然选择长期保存。这项研究的目的是阐明宿主与其包含的长寿DNA转座子家族之间的进化相互作用。在这里,我们研究了Kolobok DNA转座子超家族的分子进化。人们认为Kolobok有助于T2-MITE转座。

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