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SoyTEdb:大豆基因组中转座元件的综合数据库。

SoyTEdb: a comprehensive database of transposable elements in the soybean genome.

机构信息

Department of Agronomy, Purdue University, West Lafayette, IN 47907, USA.

出版信息

BMC Genomics. 2010 Feb 17;11:113. doi: 10.1186/1471-2164-11-113.

Abstract

BACKGROUND

Transposable elements are the most abundant components of all characterized genomes of higher eukaryotes. It has been documented that these elements not only contribute to the shaping and reshaping of their host genomes, but also play significant roles in regulating gene expression, altering gene function, and creating new genes. Thus, complete identification of transposable elements in sequenced genomes and construction of comprehensive transposable element databases are essential for accurate annotation of genes and other genomic components, for investigation of potential functional interaction between transposable elements and genes, and for study of genome evolution. The recent availability of the soybean genome sequence has provided an unprecedented opportunity for discovery, and structural and functional characterization of transposable elements in this economically important legume crop.

DESCRIPTION

Using a combination of structure-based and homology-based approaches, a total of 32,552 retrotransposons (Class I) and 6,029 DNA transposons (Class II) with clear boundaries and insertion sites were structurally annotated and clearly categorized, and a soybean transposable element database, SoyTEdb, was established. These transposable elements have been anchored in and integrated with the soybean physical map and genetic map, and are browsable and visualizable at any scale along the 20 soybean chromosomes, along with predicted genes and other sequence annotations. BLAST search and other infrastracture tools were implemented to facilitate annotation of transposable elements or fragments from soybean and other related legume species. The majority (> 95%) of these elements (particularly a few hundred low-copy-number families) are first described in this study.

CONCLUSION

SoyTEdb provides resources and information related to transposable elements in the soybean genome, representing the most comprehensive and the largest manually curated transposable element database for any individual plant genome completely sequenced to date. Transposable elements previously identified in legumes, the third largest family of flowering plants, are relatively scarce. Thus this database will facilitate structural, evolutionary, functional, and epigenetic analyses of transposable elements in soybean and other legume species.

摘要

背景

转座元件是所有高等真核生物已鉴定基因组中最丰富的组成部分。已证明这些元件不仅有助于塑造和重塑其宿主基因组,而且在调节基因表达、改变基因功能和创造新基因方面也发挥着重要作用。因此,在已测序的基因组中完整识别转座元件并构建全面的转座元件数据库,对于准确注释基因和其他基因组元件、研究转座元件与基因之间潜在的功能相互作用以及研究基因组进化是必不可少的。最近大豆基因组序列的可用性为发现和结构与功能表征提供了前所未有的机会,在这个经济上重要的豆类作物中。

描述

使用基于结构和基于同源性的方法相结合,总共对 32552 个逆转录转座子(I 类)和 6029 个 DNA 转座子(II 类)进行了结构注释和明确分类,构建了大豆转座元件数据库 SoyTEdb。这些转座元件已被锚定并整合到大豆物理图谱和遗传图谱中,可以在 20 条大豆染色体的任何尺度上进行浏览和可视化,同时还可以预测基因和其他序列注释。实施了 BLAST 搜索和其他基础设施工具,以促进大豆和其他相关豆科物种中转座元件或片段的注释。这些元件中的大多数(特别是几百个低拷贝数家族)在本研究中首次描述。

结论

SoyTEdb 提供了与大豆基因组中转座元件相关的资源和信息,代表了迄今为止完全测序的任何单个植物基因组中最全面和最大的手动整理转座元件数据库。在豆科植物中,转座元件相对较少,属于第三大开花植物家族。因此,该数据库将有助于大豆和其他豆科物种中转座元件的结构、进化、功能和表观遗传分析。

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