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Parallel Relaxation of Stringent RNA Recognition in Plant and Mammalian L1 Retrotransposons

机译:平行放松的植物和哺乳动物的L1逆转座子中严格的RNA识别。

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摘要

L1 elements are mammalian non–long terminal repeat retrotransposons, or long interspersed elements (LINEs), that significantly influence the dynamics and fluidity of the genome. A series of observations suggest that plant L1-clade LINEs, just as mammalian L1s, mobilize both short interspersed elements (SINEs) and certain messenger RNA by recognizing the 3′-poly(A) tail of RNA. However, one L1 lineage in monocots was shown to possess a conserved 3′-end sequence with a solid RNA structure also observed in maize and sorghum SINEs. This strongly suggests that plant LINEs require a particular 3′-end sequence during initiation of reverse transcription. As one L1-clade LINE was also found to share the 3′-end sequence with a SINE in a green algal genome, I propose that the ancestral L1-clade LINE in the common ancestor of green plants may have recognized the specific RNA template, with stringent recognition then becoming relaxed during the course of plant evolution.
机译:L1元件是哺乳动物的非长末端重复逆转录转座子,或长穿插元件(LINEs),它们会显着影响基因组的动力学和流动性。一系列观察表明,与哺乳动物L1一样,植物L1进化代LINEs通过识别RNA的3'-poly(A)尾部而动员了短的散布元件(SINE)和某些信使RNA。然而,单子叶植物中的一个L1谱系显示具有保守的3'端序列,并且在玉米和高粱SINE中也观察到具有固体RNA结构。这强烈表明植物LINE在逆转录起始过程中需要特定的3'-末端序列。由于在绿色藻类基因组中还发现了一个L1进化枝的LINE与SINE共享3'端序列,因此我认为绿色植物的共同祖先的祖先L1进化枝的LINE可能已经识别了特定的RNA模板,在植物进化过程中得到严格的认可,然后变得轻松。

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