Institut de Génétique et de Microbiologie, Université Paris-Sud 11, CNRS UMR 8621, Bâtiment 400, 91405 Orsay Cedex, France.
BMC Genomics. 2010 Feb 1;11:81. doi: 10.1186/1471-2164-11-81.
More and more completely sequenced fungal genomes are becoming available and many more sequencing projects are in progress. This deluge of data should improve our knowledge of the various primary and secondary metabolisms of Fungi, including their synthesis of useful compounds such as antibiotics or toxic molecules such as mycotoxins. Functional annotation of many fungal genomes is imperfect, especially of genes encoding enzymes, so we need dedicated tools to analyze their metabolic pathways in depth.
FUNGIpath is a new tool built using a two-stage approach. Groups of orthologous proteins predicted using complementary methods of detection were collected in a relational database. Each group was further mapped on to steps in the metabolic pathways published in the public databases KEGG and MetaCyc. As a result, FUNGIpath allows the primary and secondary metabolisms of the different fungal species represented in the database to be compared easily, making it possible to assess the level of specificity of various pathways at different taxonomic distances. It is freely accessible at http://www.fungipath.u-psud.fr.
As more and more fungal genomes are expected to be sequenced during the coming years, FUNGIpath should help progressively to reconstruct the ancestral primary and secondary metabolisms of the main branches of the fungal tree of life and to elucidate the evolution of these ancestral fungal metabolisms to various specific derived metabolisms.
越来越多的真菌全基因组测序数据正在不断涌现,更多的测序项目也在进行中。这些海量的数据应该会增进我们对真菌的各种初级和次级代谢物的了解,包括它们合成有用化合物(如抗生素)和有毒分子(如霉菌毒素)的能力。许多真菌基因组的功能注释并不完善,特别是那些编码酶的基因,因此我们需要专门的工具来深入分析它们的代谢途径。
FUNGIpath 是一个使用两阶段方法构建的新工具。使用互补的检测方法预测的同源蛋白组被收集在关系数据库中。然后,每个组都被映射到公共数据库 KEGG 和 MetaCyc 中发布的代谢途径步骤上。因此,FUNGIpath 可以轻松比较数据库中不同真菌物种的初级和次级代谢物,从而可以评估各种途径在不同分类学距离下的特异性水平。它可以在 http://www.fungipath.u-psud.fr 上免费访问。
随着未来几年预计会有越来越多的真菌基因组被测序,FUNGIpath 应该有助于逐步重建真菌生命树的主要分支的原始初级和次级代谢物,并阐明这些原始真菌代谢物向各种特定衍生代谢物的进化。