INRAE, LPGP, Rennes, France.
Nucleic Acids Res. 2024 Jul 5;52(W1):W65-W69. doi: 10.1093/nar/gkae264.
Teleost fish represent one of the largest and most diverse clades of vertebrates, which makes them great models in various research areas such as ecology and evolution. Recent sequencing endeavors provided high-quality genomes for species covering the main fish evolutionary lineages, opening up large-scale comparative genomics studies. However, transcriptomic data across fish species and organs are heterogenous and have not been integrated with newly sequenced genomes making gene expression quantification and comparative analyses particularly challenging. Thus, resources integrating genomic and transcriptomic data across fish species and organs are still lacking. Here, we present FEVER, a web-based resource allowing evolutionary transcriptomics across species and tissues. First, based on query genes FEVER reconstructs gene trees providing orthologous and paralogous relationships as well as their evolutionary dynamics across 13 species covering the major fish lineages, and 4 model species as evolutionary outgroups. Second, it provides unbiased gene expression across 11 tissues using up-to-date fish genomes. Finally, genomic and transcriptomic data are combined together allowing the exploration of gene expression evolution following speciation and duplication events. FEVER is freely accessible at https://fever.sk8.inrae.fr/.
硬骨鱼代表了脊椎动物中最大和最多样化的类群之一,这使它们成为生态和进化等各个研究领域的理想模型。最近的测序工作为涵盖主要鱼类进化谱系的物种提供了高质量的基因组,从而开启了大规模的比较基因组学研究。然而,鱼类物种和器官的转录组数据存在异质性,并且尚未与新测序的基因组整合,这使得基因表达定量和比较分析特别具有挑战性。因此,整合鱼类物种和器官的基因组和转录组数据的资源仍然缺乏。在这里,我们介绍了 FEVER,这是一个基于网络的资源,允许跨物种和组织进行进化转录组学研究。首先,基于查询基因,FEVER 重建基因树,提供同源和旁系同源关系及其在涵盖主要鱼类谱系的 13 个物种以及 4 个模式物种中的进化动态。其次,它提供了使用最新鱼类基因组的 11 种组织的无偏基因表达。最后,将基因组和转录组数据结合在一起,允许探索物种形成和复制事件后基因表达的进化。FEVER 可在 https://fever.sk8.inrae.fr/ 免费访问。