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首页> 外文期刊>Genome Biology >Genomic neighborhoods for Arabidopsis retrotransposons: a role for targeted integration in the distribution of the Metaviridae.
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Genomic neighborhoods for Arabidopsis retrotransposons: a role for targeted integration in the distribution of the Metaviridae.

机译:拟南芥逆转座子的基因组邻域:在Metaviridae的分布中有针对性整合的作用。

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Background: Retrotransposons are an abundant component of eukaryotic genomes. The high quality of the Arabidopsis thaliana genome sequence makes it possible to comprehensively characterize retroelement populations and explore factors that contribute to their genomic distribution. Results: We identified the full complement of A. thaliana long terminal repeat (LTR) retroelements using RetroMap, a software tool that iteratively searches genome sequences for reverse transcriptases and then defines retroelement insertions. Relative ages of full-length elements were estimated by assessing sequence divergence between LTRs: the Pseudoviridae were significantly younger than the Metaviridae. All retroelement insertions were mapped onto the genome sequence and their distribution was distinctly non-uniform. Although both Pseudoviridae and Metaviridae tend to cluster within pericentromeric heterochromatin, this association is significantly more pronounced for all three Metaviridae sublineages (Metavirus, Tat and Athila). Among these, Tat and Athila are strictly associated with pericentromeric heterochromatin. Conclusions: The non-uniform genomic distribution of the Pseudoviridae and the Metaviridae can be explained by a variety of factors including target-site bias, selection against integration into euchromatin and pericentromeric accumulation of elements as a result of suppression of recombination. However, comparisons based on the age of elements and their chromosomal location indicate that integration-site specificity is likely to be the primary factor determining distribution of the Athila and Tat sublineages of the Metaviridae. We predict that, like retroelements in yeast, the Athila and Tat elements target integration to pericentromeric regions by recognizing a specific feature of pericentromeric heterochromatin.
机译:背景:逆转座子是真核基因组的丰富组成部分。拟南芥基因组序列的高质量使全面表征逆向繁殖种群成为可能,并探索了有助于其基因组分布的因素。结果:我们使用RetroMap(一种可以迭代搜索基因组序列的逆转录酶然后定义逆转录酶插入的软件工具),确定了拟南芥长末端重复序列(LTR)逆转录酶的完整互补序列。通过评估LTR之间的序列差异来估计全长元件的相对年龄:假病毒科比后病毒科年轻得多。所有的逆向插入都被定位到基因组序列上,并且它们的分布明显不均匀。尽管假病毒科和假病毒科都倾向于在着丝粒异染色质中聚集,但对于所有三个假病毒科亚谱系(元病毒,Tat和Athila),这种关联性都更加明显。其中,Tat和Athila与着丝粒着丝粒异染色质严格相关。结论:伪病毒科和后病毒科的基因组分布不均匀可以用多种因素来解释,包括靶位偏倚,选择不整合到常染色质中以及由于抑制重组而导致元素着丝粒积累。但是,根据元素的年龄及其染色体位置进行的比较表明,整合位点的特异性很可能是决定Metaviridae的Athila和Tat子系分布的主要因素。我们预测,像酵母中的逆转录元件一样,Athila和Tat元素通过识别着糖体着丝粒异染色质的特定特征而靶向整合到着丝粒体区域。

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