Fiehn O, Kopka J, Dörmann P, Altmann T, Trethewey R N, Willmitzer L
Max Planck Institute of Molecular Plant Physiology, 14424 Potsdam, Germany.
Nat Biotechnol. 2000 Nov;18(11):1157-61. doi: 10.1038/81137.
Multiparallel analyses of mRNA and proteins are central to today's functional genomics initiatives. We describe here the use of metabolite profiling as a new tool for a comparative display of gene function. It has the potential not only to provide deeper insight into complex regulatory processes but also to determine phenotype directly. Using gas chromatography/mass spectrometry (GC/MS), we automatically quantified 326 distinct compounds from Arabidopsis thaliana leaf extracts. It was possible to assign a chemical structure to approximately half of these compounds. Comparison of four Arabidopsis genotypes (two homozygous ecotypes and a mutant of each ecotype) showed that each genotype possesses a distinct metabolic profile. Data mining tools such as principal component analysis enabled the assignment of "metabolic phenotypes" using these large data sets. The metabolic phenotypes of the two ecotypes were more divergent than were the metabolic phenotypes of the single-loci mutant and their parental ecotypes. These results demonstrate the use of metabolite profiling as a tool to significantly extend and enhance the power of existing functional genomics approaches.
对mRNA和蛋白质进行多平行分析是当今功能基因组学计划的核心。我们在此描述代谢物谱分析作为一种用于比较展示基因功能的新工具的应用。它不仅有可能为复杂的调控过程提供更深入的见解,还能直接确定表型。利用气相色谱/质谱联用仪(GC/MS),我们自动定量了拟南芥叶片提取物中的326种不同化合物。大约一半的这些化合物能够被确定化学结构。对四种拟南芥基因型(两种纯合生态型以及每种生态型的一个突变体)的比较表明,每种基因型都具有独特的代谢谱。诸如主成分分析等数据挖掘工具能够利用这些大数据集来确定“代谢表型”。两种生态型的代谢表型比单基因座突变体及其亲本生态型的代谢表型差异更大。这些结果证明了代谢物谱分析作为一种工具可显著扩展和增强现有功能基因组学方法的能力。