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首页> 外文期刊>Genome research >A genome-wide transcriptome and translatome analysis of Arabidopsis transposons identifies a unique and conserved genome expression strategy for Ty1/Copia retroelements
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A genome-wide transcriptome and translatome analysis of Arabidopsis transposons identifies a unique and conserved genome expression strategy for Ty1/Copia retroelements

机译:拟南芥转座子的基因组转录组和翻译分析鉴定了TY1 / Copia Retroelement的独特和保守的基因组表达策略

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摘要

Retroelements, the prevalent class of plant transposons, have major impacts on host genome integrity and evolution. They produce multiple proteins from highly compact genomes and, similar to viruses, must have evolved original strategies to optimize gene expression, although this aspect has been seldom investigated thus far. Here, we have established a high-resolution transcriptome/translatome map for the near-entirety of Arabidopsis thaliana transposons, using two distinct DNA methylation mutants in which transposon expression is broadly de-repressed. The value of this map to study potentially intact and transcriptionally active transposons in A thaliana is illustrated by our comprehensive analysis of the cotranscriptional and translational features of Ty1/Copia elements, a family of young and active retroelements in plant genomes, and how such features impact their biology. Genome-wide transcript profiling revealed a unique and widely conserved alternative splicing event coupled to premature termination that allows for the synthesis of a short subgenomic RNA solely dedicated to production of the GAG structural protein and that preferentially associates with polysomes for efficient translation. Mutations engineered in a transgenic version of the Arabidopsis EVD Ty1/Copia element further show how alternative splicing is crucial for the appropriate coordination of full-length and subgenomic RNA transcription. We propose that this hitherto undescribed genome expression strategy, conserved among plant Ty1/Copia elements, enables an excess of structural versus catalytic components, mandatory for mobilization.
机译:逆向血清植物转座子的逆势,对宿主基因组完整性和进化产生重大影响。它们从高度紧凑的基因组中产生多种蛋白质,类似于病毒,必须已经进化了原始策略来优化基因表达,尽管这方面很少调查到目前为止。这里,我们已经建立了用于近全周期的拟南芥转座子的高分辨率转录组/翻译地图,其中使用两个不同的DNA甲基化突变体,其中转座子表达广泛缩小。通过对TY1 / Copia元素的COTANSCRIERIONAL和平移特征,植物基因组中的年轻和活性逆势系列,以及这些特征如何影响他们的生物学。基因组转录性分析揭示了一种独特且广泛保守的替代剪接事件,耦合到过早终止,其允许合成仅致力于生产GAG结构蛋白的短亚基组织RNA,并且优先与多肌学的缔合物进行有效翻译。在拟南芥EVD TY1 / Copia元素的转基因版中工程化的突变进一步展示了替代剪接如何对全长和亚基组织基因RNA转录的适当协调至关重要。我们提出,这种迄今为止未描述的基因组表达策略在植物TY1 / Copia元素中保守,使得能够多余的结构与催化组分,强制动员。

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