Bergman Casey M, Quesneville Hadi
Faculty of Life Sciences, University of Manchester, Michael Smith Building, Oxford Road, Manchester, M13 9PT, UK.
Brief Bioinform. 2007 Nov;8(6):382-92. doi: 10.1093/bib/bbm048. Epub 2007 Oct 10.
The contribution of transposable elements (TEs) to genome structure and evolution as well as their impact on genome sequencing, assembly, annotation and alignment has generated increasing interest in developing new methods for their computational analysis. Here we review the diversity of innovative approaches to identify and annotate TEs in the post-genomic era, covering both the discovery of new TE families and the detection of individual TE copies in genome sequences. These approaches span a broad spectrum in computational biology including de novo, homology-based, structure-based and comparative genomic methods. We conclude that the integration and visualization of multiple approaches and the development of new conceptual representations for TE annotation will further advance the computational analysis of this dynamic component of the genome.
转座元件(TEs)对基因组结构和进化的贡献,以及它们对基因组测序、组装、注释和比对的影响,引发了人们对开发其计算分析新方法的日益浓厚的兴趣。在此,我们综述了后基因组时代识别和注释TEs的创新方法的多样性,涵盖了新TE家族的发现以及基因组序列中单个TE拷贝的检测。这些方法在计算生物学领域涵盖范围广泛,包括从头开始、基于同源性、基于结构和比较基因组学方法。我们得出结论,多种方法的整合与可视化以及TE注释新的概念表示的开发,将进一步推动对基因组这一动态组成部分的计算分析。