Kofler Robert, Teixeira Torres Tatiana, Lelley Tamas, Schlötterer Christian
University of Natural Resources and Applied Life Sciences, Department for Agrobiotechnology, Institute for Plant Production Biotechnology Konrad Lorenz Str 20, A-3430 Tulln, Austria.
BMC Bioinformatics. 2009 May 14;10:143. doi: 10.1186/1471-2105-10-143.
Next generation sequencing technologies hold great potential for many biological questions. While mainly used for genomic sequencing, they are also very promising for gene expression profiling. Sequencing of cDNA does not only provide an estimate of the absolute expression level, it can also be used for the identification of allele specific gene expression.
We developed PanGEA, a tool which enables a fast and user-friendly analysis of allele specific gene expression using the 454 technology. PanGEA allows mapping of 454-ESTs to genes or whole genomes, displaying gene expression profiles, identification of SNPs and the quantification of allele specific gene expression. The intuitive GUI of PanGEA facilitates a flexible and interactive analysis of the data. PanGEA additionally implements a modification of the Smith-Waterman algorithm which deals with incorrect estimates of homopolymer length as occuring in the 454 technology
To our knowledge, PanGEA is the first tool which facilitates the identification of allele specific gene expression. PanGEA is distributed under the Mozilla Public License and available at: http://www.kofler.or.at/bioinformatics/PanGEA
新一代测序技术在解决诸多生物学问题方面具有巨大潜力。虽然主要用于基因组测序,但在基因表达谱分析方面也极具前景。对互补DNA(cDNA)进行测序不仅能估计绝对表达水平,还可用于鉴定等位基因特异性基因表达。
我们开发了PanGEA工具,它能利用454技术对等位基因特异性基因表达进行快速且用户友好的分析。PanGEA可将454-表达序列标签(ESTs)映射到基因或整个基因组,展示基因表达谱,鉴定单核苷酸多态性(SNPs)以及对等位基因特异性基因表达进行定量分析。PanGEA直观的图形用户界面(GUI)便于对数据进行灵活且交互式的分析。此外,PanGEA还对史密斯-沃特曼算法进行了改进,以处理454技术中出现的同聚物长度估计错误问题。
据我们所知,PanGEA是首个有助于鉴定等位基因特异性基因表达的工具。PanGEA依据Mozilla公共许可证发布,可从以下网址获取:http://www.kofler.or.at/bioinformatics/PanGEA