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首页> 外文期刊>BMC Bioinformatics >Augmented annotation and orthologue analysis for Oryctolagus cuniculus: Better Bunny
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Augmented annotation and orthologue analysis for Oryctolagus cuniculus: Better Bunny

机译:食孔兔兔的增强注释和直系同源分析:更好的兔子

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Background The rabbit is an important model organism used in a wide range of biomedical research. However, the rabbit genome is still sparsely annotated, thus prohibiting extensive functional analysis of gene sets derived from whole-genome experiments. We developed a web-based application that provides augmented annotation and orthologue analysis for rabbit genes. Importantly, the application allows comprehensive functional analysis through the use of orthologous relationships. Results Using data extracted from several public bioinformatics repositories we created Better Bunny, a database and query tool that extensively augments the available functional annotation for rabbit genes. Using the complete set of target genes from a commercial rabbit gene expression microarray as our benchmark, we are able to obtain functional information for 88 % of the genes on the microarray. Previously, functional information was available for fewer than 10 % of the rabbit genes. Conclusions We have developed a freely available, web-accessible bioinformatics tool that enables investigators to quickly and easily perform extensive functional analysis of rabbit genes ( http://cptweb.cpt.wayne.edu webcite ). The software application fills a critical void for a wide range of biomedical research that relies on the rabbit model and requires characterization of biological function for large sets of genes.
机译:背景技术兔子是广泛用于生物医学研究的重要模型生物。但是,兔基因组仍然稀疏注释,因此禁止对源自全基因组实验的基因集进行广泛的功能分析。我们开发了一个基于Web的应用程序,可为兔基因提供增强的注释和直向同源性分析。重要的是,该应用程序允许通过使用直系同源关系进行全面的功能分析。结果利用从几个公共生物信息学资料库中提取的数据,我们创建了Better Bunny,这是一个数据库和查询工具,可广泛扩展兔基因的可用功能注释。使用来自商业兔基因表达微阵列的全套靶基因作为我们的基准,我们能够获得微阵列上88%的基因的功能信息。以前,只有不到10%的兔子基因可获得功能信息。结论我们已经开发了一种免费的,可通过网络访问的生物信息学工具,该工具使研究人员能够快速,轻松地对兔基因进行广泛的功能分析(http://cptweb.cpt.wayne.edu webcite)。该软件应用程序填补了广泛的生物医学研究的关键空白,这些生物医学研究依赖于兔子模型,并且需要表征大量基因的生物学功能。

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