Max-Planck-Institute for Molecular Plant Physiology, 14476 Potsdam, Germany.
Plant Cell. 2011 Mar;23(3):895-910. doi: 10.1105/tpc.111.083667. Epub 2011 Mar 25.
The model organism Arabidopsis thaliana is readily used in basic research due to resource availability and relative speed of data acquisition. A major goal is to transfer acquired knowledge from Arabidopsis to crop species. However, the identification of functional equivalents of well-characterized Arabidopsis genes in other plants is a nontrivial task. It is well documented that transcriptionally coordinated genes tend to be functionally related and that such relationships may be conserved across different species and even kingdoms. To exploit such relationships, we constructed whole-genome coexpression networks for Arabidopsis and six important plant crop species. The interactive networks, clustered using the HCCA algorithm, are provided under the banner PlaNet (http://aranet.mpimp-golm.mpg.de). We implemented a comparative network algorithm that estimates similarities between network structures. Thus, the platform can be used to swiftly infer similar coexpressed network vicinities within and across species and can predict the identity of functional homologs. We exemplify this using the PSA-D and chalcone synthase-related gene networks. Finally, we assessed how ontology terms are transcriptionally connected in the seven species and provide the corresponding MapMan term coexpression networks. The data support the contention that this platform will considerably improve transfer of knowledge generated in Arabidopsis to valuable crop species.
模式生物拟南芥由于资源丰富和数据获取相对较快,因此在基础研究中被广泛应用。一个主要目标是将从拟南芥中获得的知识转移到作物物种中。然而,在其他植物中鉴定功能等效的特征明确的拟南芥基因是一项艰巨的任务。有充分的文献记载表明,转录协调的基因往往具有功能相关性,并且这种关系可能在不同物种甚至生物界中都得到保守。为了利用这种关系,我们为拟南芥和六种重要的植物作物物种构建了全基因组共表达网络。使用 HCCA 算法进行聚类的交互式网络在 PlaNet(http://aranet.mpimp-golm.mpg.de)下提供。我们实现了一种比较网络算法,用于估计网络结构之间的相似性。因此,该平台可用于快速推断物种内和跨物种的相似共表达网络邻域,并预测功能同源物的身份。我们使用 PSA-D 和查尔酮合酶相关基因网络对此进行了说明。最后,我们评估了七个物种中转录连接的本体论术语,并提供了相应的 MapMan 术语共表达网络。这些数据支持这样一种观点,即该平台将极大地促进从拟南芥中获得的知识向有价值的作物物种的转移。