Koenig Natacha, Baa-Puyoulet Patrice, Lafont Amélie, Lorenzo-Colina Isis, Navratil Vincent, Leprêtre Maxime, Sugier Kevin, Delorme Nicolas, Garnero Laura, Queau Hervé, Gaillard Jean-Charles, Kielbasa Mélodie, Ayciriex Sophie, Calevro Federica, Chaumot Arnaud, Charles Hubert, Armengaud Jean, Geffard Olivier, Degli Esposti Davide
INRAE, UR RiverLy, Ecotoxicology Team, Centre de Lyon-Grenoble Auvergne Rhône Alpes, 5 rue de la Doua CS 20244, 69625 Villeurbanne, France.
INRAE, INSA Lyon, BF2I, UMR203, 69621 Villeurbanne, France.
Comp Biochem Physiol Part D Genomics Proteomics. 2024 Dec;52:101323. doi: 10.1016/j.cbd.2024.101323. Epub 2024 Sep 10.
Metabolic pathways are affected by the impacts of environmental contaminants underlying a large variability of toxic effects across different species. However, the systematic reconstruction of metabolic pathways remains limited in environmental sentinel species due to the lack of available genomic data in many taxa of animal diversity. In this study we used a multi-omics approach to reconstruct the most comprehensive map of metabolic pathways for a crustacean model in biomonitoring, the amphipod Gammarus fossarum in order to improve the knowledge of the metabolism of this sentinel species. We revisited the assembly of RNA-seq data by de novo approaches to reduce RNA contaminants and transcript redundancy. We also acquired extensive mass spectrometry shotgun proteomic data on several organs from a reference population of G. fossarum males and females to identify organ-specific metabolic profiles. The G. fossarum metabolic pathway reconstruction (available through the metabolic database GamfoCyc) was performed by adapting the genomic tool CycADS and we identified 377 pathways representing 7630 annotated enzymes, 2610 enzymatic reactions and the expression of 858 enzymes was experimentally validated by proteomics. To our knowledge, our analysis provides for the first time a systematic metabolic pathway reconstruction and the proteome profiles of these pathways at the organ level in this sentinel species. As an example, we show an elevated abundance in enzymes involved in ATP biosynthesis and fatty acid beta-oxidation indicative of the high-energy requirement of the gills, or the key anabolic and detoxification role of the hepatopancreatic caeca, as exemplified by the specific expression of the retinoid biosynthetic pathways and glutathione synthesis. In conclusion, the multi-omics data integration performed in this study provides new resources to investigate metabolic processes in crustacean amphipods and their role in mediating the effects of environmental contaminant exposures in sentinel species. SYNOPSIS: This study provide the first evidence that it is possible to combine multiple omics data to exhaustively describe the metabolic network of a model species in ecotoxicology, Gammarus fossarum, for which a reference genome is not yet available.
代谢途径受到环境污染物的影响,这些污染物导致不同物种间毒性效应存在很大差异。然而,由于动物多样性的许多分类群缺乏可用的基因组数据,环境指示物种中代谢途径的系统重建仍然有限。在本研究中,我们采用多组学方法为生物监测中的甲壳类动物模型——双栖类钩虾(Gammarus fossarum)重建了最全面的代谢途径图谱,以增进对这种指示物种代谢的了解。我们采用从头组装方法重新审视RNA测序数据的组装,以减少RNA污染物和转录本冗余。我们还从钩虾雌雄参考群体的多个器官中获取了大量质谱鸟枪法蛋白质组学数据,以确定器官特异性代谢谱。通过改编基因组工具CycADS进行了钩虾代谢途径重建(可通过代谢数据库GamfoCyc获取),我们识别出377条途径,代表7630种注释酶、2610种酶促反应,并且通过蛋白质组学实验验证了858种酶的表达。据我们所知,我们的分析首次在这种指示物种的器官水平上提供了系统的代谢途径重建以及这些途径的蛋白质组图谱。例如,我们发现参与ATP生物合成和脂肪酸β-氧化的酶丰度升高,这表明鳃对能量的高需求,或者肝胰腺盲囊的关键合成代谢和解毒作用,类视黄醇生物合成途径和谷胱甘肽合成的特异性表达就是例证。总之,本研究中进行的多组学数据整合为研究甲壳类双栖类动物的代谢过程及其在介导指示物种环境污染物暴露影响中的作用提供了新资源。摘要:本研究首次证明,可以结合多种组学数据来详尽描述生态毒理学中一个模型物种——钩虾(Gammarus fossarum)的代谢网络,该物种尚无参考基因组。