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Investigation of Plant Specialized Metabolism (Secondary Metabolism) Using Metabolomic and Proteomic Approaches

机译:使用代谢组学和蛋白质组学方法研究植物专门代谢(次生代谢)

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摘要

Specialized metabolism (secondary metabolism) in glandular trichomes of sweet basil (Ocimum basilicum L.) and accumulation of specialized metabolites (secondary metabolites) in rhizomes of turmeric (Curcuma longa L.) was investigated using proteomic and metabolomic approaches, respectively. In an effort to further clarify the regulation of metabolism in the glandular trichomes of sweet basil, we utilized a proteomics-based approach that applied MudPIT (multidimensional protein identification technology) and GeLC-MS/MS (gel enhanced LC-MS/MS) to protein samples from isolated trichomes of four different basil lines: MC, SW, SD, and EMX-1. Phosphorylation, ubiquitination and methylation of proteins in these samples were detected using X!tandem. Significant differences in distribution of the 755 non-redundant protein entries demonstrated that the proteomes of the glandular trichomes of the four basil lines were quite distinct. Correspondence between proteomic, EST, and metabolic profiling data demonstrated that both transcriptional regulation and post-transcriptional regulation contribute to the chemical diversity. One very interesting finding was that precursors for different classes of terpenoids, including mono- and sesquiterpenoids, appear to be almost exclusively supplied by the MEP (2-C-methyl-D-erythritol 4- phosphate) pathway, but not the mevolonate pathway, in basil glandular trichomes. Our results suggest that carbon flow can be readily redirected between the phenylpropanoid and terpenoid pathways in this specific cell type. To investigate the impact of genetic, developmental and environmental factors on the accumulation of phytochemicals in rhizomes of turmeric, we performed metabolomic analysis in a 2x2x4 full factorial design experiment using GC-MS, LC-MS, and LC-PDA. Our results showed that growth stage had the largest effect on levels of the three major curcuminoids. Co-regulated metabolite modules were detected, which provided valuable information for identification of phytochemicals and investigation of their biosynthesis. Based on LC-MS/MS data, 4 new diarylheptanoids were tentatively identified in turmeric rhizomes using Tandem-MSASC, a home-made software tool that automatically recognizes spectra of unknown compounds using three approaches. Based on our metabolomic results, we proposed two new strategies, “metabolomics-guided discovery” and “correlation bioassay”, to identify bioactive constituents from plant extracts based on information provided by metabolomic investigation.
机译:分别使用蛋白质组学和代谢组学方法研究了甜罗勒(Ocimum basilicum L.)腺毛中的特殊代谢(次生代谢)和姜黄(Curcuma longa L.)根状茎中特殊代谢物(次级代谢物)的积累。为了进一步阐明甜罗勒腺毛体中新陈代谢的调控,我们采用了基于蛋白质组学的方法,将MudPIT(多维蛋白质鉴定技术)和GeLC-MS / MS(凝胶增强LC-MS / MS)应用于来自四种不同罗勒系的分离的毛状体的蛋白质样品:MC,SW,SD和EMX-1。使用X串联检测这些样品中蛋白质的磷酸化,泛素化和甲基化。 755个非冗余蛋白条目的分布差异显着,表明四个罗勒系的腺毛的蛋白质组非常不同。蛋白质组学,EST和代谢谱分析数据之间的对应关系表明,转录调控和转录后调控均有助于化学多样性。一个非常有趣的发现是,不同类别的萜类化合物(包括单萜和倍半萜类)的前体似乎几乎完全是由MEP(2-C-甲基-D-赤藓糖醇4-磷酸酯)途径提供的,而不是由甲羟戊酸途径提供的,在罗勒腺毛。我们的结果表明,在这种特定细胞类型中,碳流可以很容易地在苯丙烷和萜类途径之间重新定向。为了研究遗传,发育和环境因素对姜黄根茎中植物化学物质积累的影响,我们在2x2x4全因子设计实验中使用GC-MS,LC-MS和LC-PDA进行了代谢组学分析。我们的结果表明,生长期对三种主要姜黄素水平的影响最大。检测到共调节的代谢物模块,这为鉴定植物化学物质和研究其生物合成提供了有价值的信息。根据LC-MS / MS数据,使用Tandem-MSASC(一种自制的软件工具,可使用三种方法自动识别未知化合物的光谱)在姜黄根茎中初步鉴定出4种新的二芳基庚烷类化合物。根据我们的代谢组学结果,我们提出了两种新的策略,“代谢组学指导的发现”和“相关生物测定”,以根据代谢组学研究提供的信息从植物提取物中鉴定出生物活性成分。

著录项

  • 作者

    Xie Zhengzhi;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 EN
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