Suppr超能文献

植物LTR数据库:一个针对195种植物的LTR反转录转座子的交互式数据库。

PlantLTRdb: An interactive database for 195 plant species LTR-retrotransposons.

作者信息

Mokhtar Morad M, Alsamman Alsamman M, El Allali Achraf

机构信息

African Genome Center, Mohammed VI Polytechnic University, Benguerir, Morocco.

出版信息

Front Plant Sci. 2023 Mar 6;14:1134627. doi: 10.3389/fpls.2023.1134627. eCollection 2023.

Abstract

LTR-retrotransposons (LTR-RTs) are a large group of transposable elements that replicate through an RNA intermediate and alter genome structure. The activities of LTR-RTs in plant genomes provide helpful information about genome evolution and gene function. LTR-RTs near or within genes can directly alter gene function. This work introduces PlantLTRdb, an intact LTR-RT database for 195 plant species. Using homology- and structure-based methods, a total of 150.18 Gbp representing 3,079,469 pseudomolecules/scaffolds were analyzed to identify, characterize, annotate LTR-RTs, estimate insertion ages, detect LTR-RT-gene chimeras, and determine nearby genes. Accordingly, 520,194 intact LTR-RTs were discovered, including 29,462 autonomous and 490,732 nonautonomous LTR-RTs. The autonomous LTR-RTs included 10,286 and 19,176 , while the nonautonomous were divided into 224,906 , 218,414 , 1,768 BARE-2, 3,147 TR-GAG and 4,2497 unknown. Analysis of the identified LTR-RTs located within genes showed that a total of 36,236 LTR-RTs were LTR-RT-gene chimeras and 11,619 LTR-RTs were within pseudo-genes. In addition, 50,026 genes are within 1 kbp of LTR-RTs, and 250,587 had a distance of 1 to 10 kbp from LTR-RTs. PlantLTRdb allows researchers to search, visualize, BLAST and analyze plant LTR-RTs. PlantLTRdb can contribute to the understanding of structural variations, genome organization, functional genomics, and the development of LTR-RT target markers for molecular plant breeding. PlantLTRdb is available at https://bioinformatics.um6p.ma/PlantLTRdb.

摘要

长末端重复序列反转录转座子(LTR-RTs)是一大类可移动元件,它们通过RNA中间体进行复制并改变基因组结构。LTR-RTs在植物基因组中的活性为基因组进化和基因功能提供了有用信息。基因附近或基因内部的LTR-RTs可直接改变基因功能。这项工作介绍了PlantLTRdb,一个针对195种植物的完整LTR-RT数据库。使用基于同源性和结构的方法,对代表3,079,469个假分子/支架的总共150.18 Gbp进行了分析,以识别、表征、注释LTR-RTs,估计插入年龄,检测LTR-RT-基因嵌合体,并确定附近的基因。据此,发现了520,194个完整的LTR-RTs,包括29,462个自主LTR-RTs和490,732个非自主LTR-RTs。自主LTR-RTs包括10,286个 和19,176个 ,而非自主LTR-RTs分为224,906个 、218,414个 、1,768个BARE-2、3,147个TR-GAG和4,2497个未知类型。对基因内部鉴定出的LTR-RTs的分析表明,共有36,236个LTR-RTs是LTR-RT-基因嵌合体,11,619个LTR-RTs位于假基因内部。此外,50,026个基因位于LTR-RTs的1 kbp范围内,250,587个基因与LTR-RTs的距离为1至10 kbp。PlantLTRdb允许研究人员搜索、可视化、进行BLAST分析以及分析植物LTR-RTs。PlantLTRdb有助于理解结构变异、基因组组织、功能基因组学,以及开发用于分子植物育种的LTR-RT目标标记。可通过https://bioinformatics.um6p.ma/PlantLTRdb访问PlantLTRdb。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebf4/10025401/777fe2c1e987/fpls-14-1134627-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验