Beijing Key Laboratory of Ornamental Plants Germplasm Innovation and Molecular Breeding, National Engineering Research Center for Floriculture, Beijing Laboratory of Urban and Rural Ecological Environment, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants of Ministry of Education, School of Landscape Architecture, Beijing Forestry University, Beijing, 100083, China.
Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing, 100083, China.
Mol Genet Genomics. 2018 Oct;293(5):1301-1316. doi: 10.1007/s00438-018-1449-y. Epub 2018 May 26.
This study focused on the construction of a database of transposable elements (TEs) from Rosaceae plants, the third most economically important plant family in temperate regions, and its transcriptomics applications. The evolutionary effects of TEs on gene regulation have been explored, and TE insertions can be the molecular bases of changes in gene structure and function. However, a specific Rosaceae plant TE database (RPTEdb) is lacking. The genomes of several Rosaceae plants have been sequenced, providing the opportunity to mine TE data at a whole-genome level. Therefore, we constructed the RPTEdb, a collective and comprehensive database of 19,596 annotated TEs in the genomes of Rosaceae plants using previously described identification and annotation methods and published genome sequences. The user-friendly web-based database provides access to research tools through hyperlinks, including Browse, TE tree, tools, JBrowse, and search sections, and through the inputting of sequences on the main webpage. Next, we performed one advanced application in which TEs near predicted long non-coding RNA (lncRNA) and mRNA domains within white and red petal-tissue transcriptomes of Prunus mume 'Fuban Tiaozhi' were identified, revealing 16 TEs that overlapped or were near 16 differentially expressed lncRNA domains, and 54 TEs that overlapped or were near 54 differentially expressed mRNA domains, and the TEs' possible functions were also discussed. We believe that the RPTEdb will contribute to the understanding of TE roles in the structural, functional and evolutionary dynamics of Rosaceae plant genomes.
本研究专注于构建蔷薇科植物转座元件(TEs)数据库,蔷薇科是温带地区第三大具有重要经济价值的植物科,同时也探讨了 TEs 对基因调控的进化影响,TE 插入可以作为基因结构和功能变化的分子基础。然而,缺乏特定的蔷薇科植物 TE 数据库(RPTEdb)。已经对几种蔷薇科植物的基因组进行了测序,这为在全基因组水平上挖掘 TE 数据提供了机会。因此,我们构建了 RPTEdb,这是一个使用先前描述的鉴定和注释方法以及已发表的基因组序列,从蔷薇科植物基因组中注释的 19596 个 TEs 的集合和综合数据库。用户友好的基于网络的数据库通过超链接提供了研究工具的访问权限,包括浏览、TE 树、工具、JBrowse 和搜索部分,以及通过在主网页上输入序列。接下来,我们进行了一项高级应用,鉴定了李属‘伏般条枝’白花和红花花瓣组织转录组中预测的长非编码 RNA(lncRNA)和 mRNA 结构域附近的 TEs,发现了 16 个与 16 个差异表达 lncRNA 结构域重叠或接近的 TEs,以及 54 个与 54 个差异表达 mRNA 结构域重叠或接近的 TEs,并讨论了 TEs 的可能功能。我们相信,RPTEdb 将有助于理解 TEs 在蔷薇科植物基因组的结构、功能和进化动态中的作用。