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Centromere-targeted de novo integrations of an LTR retrotransposon of Arabidopsis lyrata

机译:Centromere-Targeted de Novo集成拟南芥LTR Retrotransposon

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摘要

The plant genome evolves with rapid proliferation of LTR-type retrotransposons, which is associated with their clustered accumulation in gene-poor regions, such as centromeres. Despite their major role for plant genome evolution, no mobile LTR element with targeted integration into gene-poor regions has been identified in plants. Here, we report such targeted integrations de novo. We and others have previously shown that an ATCOPIA93 family retrotransposon in Arabidopsis thaliana is mobilized when the DNA methylation machinery is compromised. Although ATCOPIA93 family elements are low copy number in the wild-type A. thaliana genome, high-copynumber related elements are found in the wild-type Arabidopsis lyrata genome, and they show centromere-specific localization. To understand the mechanisms for the clustered accumulation of the A. lyrata elements directly, we introduced one of them, named Tal1 (Transposon of Arabidopsis lyrata 1), into A. thaliana by transformation. The introduced Tal1 was retrotransposed in A. thaliana, and most of the retrotransposed copies were found in centromeric repeats of A. thaliana, suggesting targeted integration. The targeted integration is especially surprising because the centromeric repeat sequences differ considerably between A. lyrata and A. thaliana. Our results revealed unexpectedly dynamic controls for evolution of the transposon-rich heterochromatic regions.
机译:植物基因组随着LTR型转回横向的快速增殖而发展,其与其基因贫困地区的聚类积聚相关,例如焦粒子。尽管植物基因组进化具有主要作用,但在植物中没有鉴定具有针对性贫困地区的目标融合的移动LTR元素。在这里,我们报告了这样的目标集成De Novo。我们和其他人以前表明,当DNA甲基化机械受到损害时,拟南芥拟南芥的ATCOPIA93家族回析蛋白受到动员。虽然ATCOPIA93家族元素在野生型A中的副本数量低拷贝数,但在野生型拟南芥Lyrata Genome中发现了高转录器相关元素,并且它们显示了Centromere的定位。要了解A. Lyrata元素的集群积累的机制直接,我们将其中一个名为Tal1(拟南芥1)的转座(Arabidopsis Lyrata 1),进入A. Thaliana通过转化。介绍的Tal1在A.拟南芥中转回,并且大多数转回拷贝在A.本地的焦化重复中发现,表明有针对性的整合。靶向的一体化尤其令人惊讶,因为焦化重复序列在A.Lyrata和A. Thaliana之间的差异很大。我们的结果显示出意外的动态控制,用于转座子富含异色区的演变。

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