DANTE and DANTE_LTR: lineage-centric annotation pipelines for long terminal repeat retrotransposons in plant genomes.

IF 4 Q1 GENETICS & HEREDITY NAR Genomics and Bioinformatics Pub Date : 2024-08-29 eCollection Date: 2024-09-01 DOI:10.1093/nargab/lqae113
Petr Novák, Nina Hoštáková, Pavel Neumann, Jiří Macas
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Abstract

Long terminal repeat (LTR) retrotransposons constitute a predominant class of repetitive DNA elements in most plant genomes. With the increasing number of sequenced plant genomes, there is an ongoing demand for computational tools facilitating efficient annotation and classification of LTR retrotransposons in plant genome assemblies. Herein, we introduce DANTE, a computational pipeline for Domain-based ANnotation of Transposable Elements, designed for sensitive detection of these elements via their conserved protein domain sequences. The identified protein domains are subsequently inputted into the DANTE_LTR pipeline to annotate complete element sequences by detecting their structural features, such as LTRs, in adjacent genomic regions. Leveraging domain sequences allows for precise classification of elements into phylogenetic lineages, offering a more granular annotation compared with coarser conventional superfamily-based classification methods. The efficiency and accuracy of this approach were evidenced via annotation of LTR retrotransposons in 93 plant genomes. Results were benchmarked against several established pipelines, showing that DANTE_LTR is capable of identifying significantly more intact LTR retrotransposons. DANTE and DANTE_LTR are provided as user-friendly Galaxy tools accessible via a public server (https://repeatexplorer-elixir.cerit-sc.cz), installable on local Galaxy instances from the Galaxy tool shed or executable from the command line.

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DANTE和DANTE_LTR:植物基因组中长末端重复反转座子的以系为中心的注释管道。
长末端重复(LTR)反转座子是大多数植物基因组中最主要的一类重复 DNA 元件。随着植物基因组测序数量的不断增加,人们对计算工具的需求也在不断增长,这些工具有助于对植物基因组集合中的 LTR 逆转座子进行高效注释和分类。在此,我们介绍了 DANTE,这是一种基于结构域的可转座元件标注计算管道,旨在通过其保守的蛋白质结构域序列灵敏地检测这些元件。确定的蛋白质结构域随后被输入到 DANTE_LTR 管道中,通过检测邻近基因组区域中的结构特征(如 LTR)来注释完整的元件序列。利用结构域序列可以将元件精确分类到系统发生系中,与传统的基于超家族的粗略分类方法相比,这种方法提供了更精细的注释。通过对 93 个植物基因组中的 LTR 反转座子进行注释,证明了这种方法的效率和准确性。结果显示,DANTE_LTR能够识别出更多完整的LTR逆转录转座子。DANTE 和 DANTE_LTR 作为用户友好的 Galaxy 工具提供,可通过公共服务器(https://repeatexplorer-elixir.cerit-sc.cz)访问,也可从 Galaxy 工具箱安装到本地 Galaxy 实例或从命令行执行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.00
自引率
2.20%
发文量
95
审稿时长
15 weeks
期刊最新文献
Correction to 'Clusters of mammalian conserved RNA structures in UTRs associate with RBP binding sites'. Machine learning of metabolite-protein interactions from model-derived metabolic phenotypes. Context-adjusted proportion of singletons (CAPS): a novel metric for assessing negative selection in the human genome. DANTE and DANTE_LTR: lineage-centric annotation pipelines for long terminal repeat retrotransposons in plant genomes. Deep learning and direct sequencing of labeled RNA captures transcriptome dynamics.
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