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Inferring transposons activity chronology by TRANScendence – TEs database and de-novo mining tool

机译:通过TRANScendence推断转座子活动的时间顺序-TEs数据库和de-novo挖掘工具

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The constant progress in sequencing technology leads to ever increasing amounts of genomic data. In the light of current evidence transposable elements (TEs for short) are becoming useful tools for learning about the evolution of host genome. Therefore the software for genome-wide detection and analysis of TEs is of great interest. Here we describe the computational tool for mining, classifying and storing TEs from newly sequenced genomes. This is an online, web-based, user-friendly service, enabling users to upload their own genomic data, and perform de-novo searches for TEs. The detected TEs are automatically analyzed, compared to reference databases, annotated, clustered into families, and stored in TEs repository. Also, the genome-wide nesting structure of found elements are detected and analyzed by new method for inferring evolutionary history of TEs. We illustrate the functionality of our tool by performing a full-scale analyses of TE landscape in Medicago truncatula genome. TRANScendence is an effective tool for the de-novo annotation and classification of transposable elements in newly-acquired genomes. Its streamlined interface makes it well-suited for evolutionary studies.
机译:测序技术的不断进步导致基因组数据的数量不断增加。根据目前的证据,转座因子(简称TEs)正成为了解宿主基因组进化的有用工具。因此,用于全基因组TEs检测和分析的软件引起了极大的兴趣。在这里,我们描述了用于从新测序的基因组中挖掘,分类和存储TE的计算工具。这是一项基于Web的在线用户友好服务,使用户能够上传自己的基因组数据,并对TE进行新颖的搜索。检测到的TE会自动进行分析,并与参考数据库进行比较,添加注释,聚类到族中并存储在TE仓库中。此外,通过推断TEs进化史的新方法来检测和分析发现元素的全基因组嵌套结构。我们通过对Medi藜苜蓿基因组中的TE景观进行全面分析来说明我们工具的功能。 TRANScendence是对新获得的基因组中的转座因子进行重新注释和分类的有效工具。其简化的界面使其非常适合进化研究。

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