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Metabolomics of developing zebrafish embryos using gas chromatography- and liquid chromatography-mass spectrometry

机译:气相色谱-液相色谱-质谱法研究斑马鱼胚胎的代谢组学

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摘要

Zebrafish embryogenesis is a rapid process driven by a myriad of gene products and small molecules. As previous studies have detailed the relevant transcriptional and proteomics changes, here we assess the metabolomic changes that occur at different stages of embryogenesis (4, 8,12, 24 and 48 hours post fertilization). Metabolite levels were detected using GC-MS and LC-MS, following which multivariate analysis (OPLS-DA) was applied to identify metabolites that were differentially regulated throughout embryogenesis. From the two robust OPLS-DA models that were generated (Q~2(cum) = 0.940 and Q~2(cum) = 0.894), a total of 60 detected metabolites (20 from GC-MS, 40 from LC-MS) were identified and found to be important in discriminating between developmental stages. Hierarchical clustering analysis was applied to the dataset and metabolite classes such as amino acids and lipids were shown to be differentially regulated. Biologically relevant transcriptomic and proteomic data were associated with metabolites to provide a more holistic systems perspective of embryogenesis. In summary, the metabolic profiles of different developmental stages highlight the dynamic changes occurring during embryogenesis. These data could serve as a basis for future toxicological or developmental studies.
机译:斑马鱼的胚胎发生是由众多基因产物和小分子驱动的快速过程。由于先前的研究已经详细介绍了相关的转录和蛋白质组学变化,因此在此我们评估在胚胎发生的不同阶段(受精后4、8、12、24和48小时)发生的代谢组学变化。使用GC-MS和LC-MS检测代谢物水平,然后应用多变量分析(OPLS-DA)鉴定在整个胚胎发生过程中差异调节的代谢物。从生成的两个健壮的OPLS-DA模型(Q〜2(cum)= 0.940和Q〜2(cum)= 0.894)中,总共检测到60种代谢物(GC-MS中20种,LC-MS中40种)被发现并被认为在区分发育阶段方面很重要。层次聚类分析应用于数据集,并且代谢物类别(例如氨基酸和脂质)显示出不同的调控作用。与生物学相关的转录组学和蛋白质组学数据与代谢物相关,从而为胚胎发生提供更全面的系统视角。总而言之,不同发育阶段的代谢谱突出了胚胎发生过程中发生的动态变化。这些数据可以作为未来毒理学或发育研究的基础。

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  • 来源
    《Molecular BioSystems》 |2013年第6期|1372-1380|共9页
  • 作者单位

    Saw Swee Hock School of Public Health, National University of Singapore, Lower Kent Ridge Road, Singapore 119260;

    Saw Swee Hock School of Public Health, National University of Singapore, Lower Kent Ridge Road, Singapore 119260,China Pharmaceutical University, Key Laboratory of Drug Quality Control and Pharmacovigilance (Ministry of Education), Nanjing, China;

    Department of Biological Science, National University of Singapore (NUS), 14 Science Drive 4, Singapore 117543,NUS Environmental Research Institute (NERI), 5A Engineering Drive 1, T-Lab Building, # 02-01, Singapore 117411;

    Department of Biological Science, National University of Singapore (NUS), 14 Science Drive 4, Singapore 117543;

    Saw Swee Hock School of Public Health, National University of Singapore, Lower Kent Ridge Road, Singapore 119260,NUS Environmental Research Institute (NERI), 5A Engineering Drive 1, T-Lab Building, # 02-01, Singapore 117411;

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