Department of Animal Sciences, University of California Davis, Davis, CA, USA.
Department of Poultry and Aquaculture, Institute of Animal Sciences, Agricultural Research Organization, Volcani Center, Rishon LeZion, Israel.
Mol Ecol Resour. 2021 Oct;21(7):2486-2503. doi: 10.1111/1755-0998.13445. Epub 2021 Jun 29.
Interactions of organisms with their environment are complex and environmental regulation at different levels of biological organization is often nonlinear. Therefore, the genotype to phenotype continuum requires study at multiple levels of organization. While studies of transcriptome regulation are now common for many species, quantitative studies of environmental effects on proteomes are needed. Here we report the generation of a data-independent acquisition (DIA) assay library that enables simultaneous targeted proteomics of thousands of Oreochromis niloticus kidney proteins using a label- and gel-free workflow that is well suited for ecologically relevant field samples. We demonstrate the usefulness of this DIA assay library by discerning environmental effects on the kidney proteome of O. niloticus. Moreover, we demonstrate that the DIA assay library approach generates data that are complimentary rather than redundant to transcriptomic data. Transcript and protein abundance differences in kidneys of tilapia acclimated to freshwater and brackish water (25 g/kg) were correlated for 2114 unique genes. A high degree of non-linearity in salinity-dependent regulation of transcriptomes and proteomes was revealed suggesting that the regulation of O. niloticus renal function by environmental salinity relies heavily on post-transcriptional mechanisms. The application of functional enrichment analyses using STRING and KEGG to DIA assay data sets is demonstrated by identifying myo-inositol metabolism, antioxidant and xenobiotic functions, and signalling mechanisms as key elements controlled by salinity in tilapia kidneys. The DIA assay library resource presented here can be adopted for other tissues and other organisms to study proteome dynamics during changing ecological contexts.
生物体与环境的相互作用是复杂的,环境在不同层次的生物组织中的调节通常是非线性的。因此,基因型到表型的连续体需要在多个组织层次上进行研究。虽然现在许多物种的转录组调节研究已经很常见,但需要对环境对蛋白质组的影响进行定量研究。在这里,我们报告了一种数据独立采集(DIA)检测文库的生成,该文库能够使用无标签和无凝胶的工作流程同时靶向数千个尼罗罗非鱼肾脏蛋白进行定量蛋白质组学研究,该工作流程非常适合具有生态相关性的现场样本。我们通过辨别环境对尼罗罗非鱼肾脏蛋白质组的影响,证明了这种 DIA 检测文库的有用性。此外,我们还证明了 DIA 检测文库方法生成的数据与转录组数据是互补的,而不是冗余的。适应淡水和微咸水(25 g/kg)的罗非鱼肾脏中转录本和蛋白质丰度差异与 2114 个独特基因相关。盐度依赖性转录组和蛋白质组调节的高度非线性表明,环境盐度对尼罗罗非鱼肾功能的调节严重依赖于转录后机制。通过使用 STRING 和 KEGG 对 DIA 检测数据集进行功能富集分析的应用,确定肌醇代谢、抗氧化和外来物质功能以及信号转导机制是盐度控制罗非鱼肾脏的关键因素。本文提出的 DIA 检测文库资源可用于其他组织和其他生物体,以研究在不断变化的生态环境中蛋白质组的动态变化。