National Institute of Nutrition and Seafood Research (NIFES), Bergen, Norway.
PLoS One. 2013 Jul 24;8(7):e69461. doi: 10.1371/journal.pone.0069461. Print 2013.
This work studies final nutritional status and transcriptional responses of rainbow trout (Oncorhynchus mykiss Walbaum 1792) (28 g) after a 10 week feeding experiment designed to elucidate the effect of adding a vitamin and mineral premix on growth, health, and nutritional endpoints. Juvenile fish were fed a either a diet supplemented with a vitamin and mineral premix (Diet S) or the same diet without premix supplementation (Diet U). The analyzed micronutrient composition of diets differed accordingly. Pooled livers from 15 fish from each dietary group were used to create suppression subtractive hybridization (SSH) cDNA libraries that were sequenced with 454 FLX GS Titanium Technology. In total 552 812 reads were sequenced from the two cDNA libraries. Ingenuity pathway analysis (IPA) was then used to characterize the hepatic transcriptome of the two dietary groups of rainbow trout. In the present communication we discuss how selected micronutrients may affect the transcriptome at suboptimal status by directly impacting the cellular metabolism, functions, and structures, and by introducing respective compensatory mechanisms. Processes related to lipid metabolism, peptide hydrolysis, oxygen transportation, and growth development were mostly affected. Considering the transcriptomics data relative to changes in nutritional status from the feeding study and the background phenotypic outcome of growth performance and gill histopathology, the outcome of the transcriptional profiling are suggested to be mainly related to suboptimal pantothenic acid and vitamin C nutrition.
本研究通过 10 周的饲养实验,探讨了添加维生素和矿物质预混料对虹鳟(Oncorhynchus mykiss Walbaum 1792)生长、健康和营养终点的影响,研究了虹鳟的最终营养状况和转录反应。实验选用 28g 的幼鱼,分别投喂添加维生素和矿物质预混料的饲料(Diet S)或不含预混料的相同饲料(Diet U)。相应地,分析了两种饲料的微量营养素组成。从每个饲料组的 15 条鱼的肝脏中提取总 RNA,构建抑制性消减杂交(SSH)cDNA 文库,并使用 454 FLX GS Titanium 技术进行测序。从两个 cDNA 文库中共测序了 552812 条reads。然后使用 IPA 对虹鳟两种不同饲料组的肝脏转录组进行了特征分析。在本研究中,我们讨论了某些微量营养素如何通过直接影响细胞代谢、功能和结构,以及引入相应的补偿机制,在营养不足的情况下如何影响转录组。受影响的过程主要与脂质代谢、肽水解、氧气运输和生长发育有关。考虑到与饲养研究中营养状况变化相关的转录组学数据,以及生长性能和鳃组织病理学的背景表型结果,提示转录谱的结果主要与泛酸和维生素 C 营养不足有关。