Roessner U, Luedemann A, Brust D, Fiehn O, Linke T, Willmitzer L, Fernie A
Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, 14476 Golm, Germany.
Plant Cell. 2001 Jan;13(1):11-29. doi: 10.1105/tpc.13.1.11.
Metabolic profiling using gas chromatography-mass spectrometry technologies is a technique whose potential in the field of functional genomics is largely untapped. To demonstrate the general usefulness of this technique, we applied to diverse plant genotypes a recently developed profiling protocol that allows detection of a wide range of hydrophilic metabolites within a single chromatographic run. For this purpose, we chose four independent potato genotypes characterized by modifications in sucrose metabolism. Using data-mining tools, including hierarchical cluster analysis and principle component analysis, we were able to assign clusters to the individual plant systems and to determine relative distances between these clusters. Extraction analysis allowed identification of the most important components of these clusters. Furthermore, correlation analysis revealed close linkages between a broad spectrum of metabolites. In a second, complementary approach, we subjected wild-type potato tissue to environmental manipulations. The metabolic profiles from these experiments were compared with the data sets obtained for the transgenic systems, thus illustrating the potential of metabolic profiling in assessing how a genetic modification can be phenocopied by environmental conditions. In summary, these data demonstrate the use of metabolic profiling in conjunction with data-mining tools as a technique for the comprehensive characterization of a plant genotype.
使用气相色谱 - 质谱技术进行代谢物谱分析是一种在功能基因组学领域潜力尚未得到充分开发的技术。为了证明该技术的普遍实用性,我们将一种最近开发的谱分析方案应用于多种植物基因型,该方案能够在一次色谱分析中检测多种亲水性代谢物。为此,我们选择了四种因蔗糖代谢改变而具有特征的独立马铃薯基因型。使用包括层次聚类分析和主成分分析在内的数据挖掘工具,我们能够将聚类分配到各个植物系统,并确定这些聚类之间的相对距离。提取分析有助于识别这些聚类中最重要的成分。此外,相关性分析揭示了多种代谢物之间的紧密联系。在第二种互补方法中,我们对野生型马铃薯组织进行环境处理。将这些实验得到的代谢物谱与转基因系统获得的数据集进行比较,从而说明了代谢物谱分析在评估环境条件如何模拟基因修饰方面的潜力。总之,这些数据证明了结合数据挖掘工具使用代谢物谱分析作为全面表征植物基因型的一种技术。