Roessner-Tunali Ute, Liu JunLi, Leisse Andrea, Balbo Ilse, Perez-Melis Alicia, Willmitzer Lothar, Fernie Alisdair R
Department of Molecular Physiology, Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, 14476 Golm, Germany.
Plant J. 2004 Aug;39(4):668-79. doi: 10.1111/j.1365-313X.2004.02157.x.
Metabolic pathways of primary metabolism of discs isolated from potato tubers were evaluated by the use of a gas chromatography-mass spectrometry (GC-MS) method generated specifically for this purpose. After testing several possible methods including chemical ionization, it was decided for reasons of sensitivity, reproducibility and speed to use electron impact ionization-based GC-MS analysis. The specific labelling and label accumulation of over 30 metabolites including a broad number of sugars, organic and amino acids was analysed following the incubation of tuber discs in [U-(13)C]glucose. The reproducibility of this method was similar to that found for other GC-MS-based analyses and comparison of flux estimates from this method with those obtained from parallel, yet less comprehensive, radiolabel experiments revealed close agreement. Therefore, the novel method allows quantitatively evaluation of a broad range of metabolic pathways without the need for laborious (and potentially inaccurate), chemical fractionation procedures commonly used in the estimation of fluxes following incubation in radiolabelled substrates. As a first experiment the GC-MS method has been applied to compare the metabolism of wild type and well-characterized transgenic potato tubers exhibiting an enhanced sucrose mobilization. The fact that this method is able to rapidly yield further comprehensive information into primary metabolism illustrates its power as a further phenotyping tool for the analysis of plant metabolism.
通过使用专门为此目的开发的气相色谱 - 质谱联用(GC-MS)方法,对从马铃薯块茎中分离出的圆盘组织的初级代谢途径进行了评估。在测试了包括化学电离在内的几种可能方法后,出于灵敏度、重现性和速度的考虑,决定使用基于电子轰击电离的GC-MS分析。在块茎圆盘组织于[U-(13)C]葡萄糖中孵育后,分析了包括多种糖类、有机酸和氨基酸在内的30多种代谢物的特异性标记和标记积累情况。该方法的重现性与其他基于GC-MS的分析方法相似,并且将该方法的通量估计值与通过平行但不太全面的放射性标记实验获得的通量估计值进行比较,结果显示两者非常吻合。因此,这种新方法能够对广泛的代谢途径进行定量评估,而无需使用在放射性标记底物孵育后估计通量时常用的费力(且可能不准确)的化学分级分离程序。作为第一个实验,GC-MS方法已被用于比较野生型和具有增强蔗糖动员能力的、特征明确的转基因马铃薯块茎的代谢情况。该方法能够快速产生关于初级代谢的更全面信息,这一事实说明了它作为植物代谢分析的进一步表型分析工具的强大功能。