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使用CENSOR和RepeatMasker对转座元件序列进行分析。

Analysis of transposable element sequences using CENSOR and RepeatMasker.

作者信息

Huda Ahsan, Jordan I King

机构信息

School of Biology, Georgia Institute of Technology, Atlanta, GA, USA.

出版信息

Methods Mol Biol. 2009;537:323-36. doi: 10.1007/978-1-59745-251-9_16.

Abstract

Eukaryotic genomes are full of repetitive DNA, transposable elements (TEs) in particular, and accordingly there are a number of computational methods that can be used to identify TEs from genomic sequences. We present here a survey of two of the most readily available and widely used bioinformatics applications for the detection, characterization, and analysis of TE sequences in eukaryotic genomes: CENSOR and RepeatMasker. For each program, information on availability, input, output, and the algorithmic methods used is provided. Specific examples of the use of CENSOR and RepeatMasker are also described. CENSOR and RepeatMasker both rely on homology-based methods for the detection of TE sequences. There are several other classes of methods available for the analysis of repetitive DNA sequences including de novo methods that compare genomic sequences against themselves, class-specific methods that use structural characteristics of specific classes of elements to aid in their identification, and pipeline methods that combine aspects of some or all of the aforementioned methods. We briefly consider the strengths and weaknesses of these different classes of methods with an emphasis on their complementary utility for the analysis of repetitive DNA in eukaryotes.

摘要

真核生物基因组中充满了重复DNA,尤其是转座元件(TEs),因此有许多计算方法可用于从基因组序列中识别TEs。我们在此对两种最容易获得且广泛使用的生物信息学应用进行综述,它们用于检测、表征和分析真核生物基因组中的TE序列:CENSOR和RepeatMasker。对于每个程序,都提供了关于可用性、输入、输出以及所使用算法方法的信息。还描述了使用CENSOR和RepeatMasker的具体示例。CENSOR和RepeatMasker都依赖基于同源性的方法来检测TE序列。还有其他几类方法可用于分析重复DNA序列,包括将基因组序列与其自身进行比较的从头开始方法、利用特定元件类别的结构特征辅助其识别的类别特异性方法,以及结合上述部分或全部方法的流程方法。我们简要考虑了这些不同类方法的优缺点,重点强调了它们在分析真核生物重复DNA方面的互补作用。

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