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metaTIGER: a metabolic evolution resource.

机译:metaTIGER:代谢进化资源。

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Metabolic networks are a subject that has received much attention, but existing web resources do not include extensive phylogenetic information. Phylogenomic approaches (phylogenetics on a genomic scale) have been shown to be effective in the study of evolution and processes like horizontal gene transfer (HGT). To address the lack of phylogenomic information relating to eukaryotic metabolism, metaTIGER (www.bioinformatics.leeds.ac.uk/metatiger) has been created, using genomic information from 121 eukaryotes and 404 prokaryotes and sensitive sequence search techniques to predict the presence of metabolic enzymes. These enzyme sequences were used to create a comprehensive database of 2257 maximum-likelihood phylogenetic trees, some containing over 500 organisms. The trees can be viewed using iTOL, an advanced interactive tree viewer, enabling straightforward interpretation of large trees. Complex high-throughput tree analysis is also available through user-defined queries, allowing the rapid identification of trees of interest, e.g. containing putative HGT events. metaTIGER also provides novel and easy-to-use facilities for viewing and comparing the metabolic networks in different organisms via highlighted pathway images and tables. metaTIGER is demonstrated through evolutionary analysis of Plasmodium, including identification of genes horizontally transferred from chlamydia.
机译:代谢网络是一个备受关注的主题,但是现有的Web资源不包含广泛的系统发育信息。系统进化方法(在基因组规模上的系统发育)已被证明在研究进化和水平基因转移(HGT)等过程中是有效的。为了解决与真核生物代谢有关的植物遗传学信息缺乏的问题,已使用来自121个真核生物和404个原核生物的基因组信息以及敏感的序列搜索技术来预测代谢的存在,从而创建了metaTIGER(www.bioinformatics.leeds.ac.uk/metatiger)。酶。这些酶序列可用于创建2257个最大似然系统树的综合数据库,其中一些包含500多种生物。可以使用高级交互式树查看器iTOL来查看树,从而可以直接解释大型树。还可以通过用户定义的查询进行复杂的高通量树分析,从而可以快速识别感兴趣的树,例如树。包含推定的HGT事件。 metaTIGER还提供了新颖且易于使用的设施,用于通过突出显示的途径图像和表格查看和比较不同生物体中的代谢网络。通过对疟原虫的进化分析,包括鉴定从衣原体水平转移的基因,证明了metaTIGER。

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