Roessner-Tunali Ute, Hegemann Björn, Lytovchenko Anna, Carrari Fernando, Bruedigam Claudia, Granot David, Fernie Alisdair R
Department of Lothar Willmitzer, Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, 14476 Golm, Germany.
Plant Physiol. 2003 Sep;133(1):84-99. doi: 10.1104/pp.103.023572.
We have conducted a comprehensive metabolic profiling on tomato (Lycopersicon esculentum) leaf and developing fruit tissue using a recently established gas chromatography-mass spectrometry profiling protocol alongside conventional spectrophotometric and liquid chromatographic methodologies. Applying a combination of these techniques, we were able to identify in excess of 70 small-M(r) metabolites and to catalogue the metabolite composition of developing tomato fruit. In addition to comparing differences in metabolite content between source and sink tissues of the tomato plant and after the change in metabolite pool sizes through fruit development, we have assessed the influence of hexose phosphorylation through fruit development by analyzing transgenic plants constitutively overexpressing Arabidopsis hexokinase AtHXK1. Analysis of the total hexokinase activity in developing fruits revealed that both wild-type and transgenic fruits exhibit decreasing hexokinase activity with development but that the relative activity of the transgenic lines with respect to wild type increases with development. Conversely, both point-by-point and principal component analyses suggest that the metabolic phenotype of these lines becomes less distinct from wild type during development. In summary, the data presented in this paper demonstrate that the influence of hexose phosphorylation diminishes during fruit development and highlights the importance of greater temporal resolution of metabolism.
我们使用最近建立的气相色谱 - 质谱分析方法,结合传统的分光光度法和液相色谱法,对番茄(Lycopersicon esculentum)叶片和发育中的果实组织进行了全面的代谢物谱分析。应用这些技术的组合,我们能够鉴定出70多种小分子质量代谢物,并对发育中的番茄果实的代谢物组成进行编目。除了比较番茄植株源库组织之间代谢物含量的差异以及果实发育过程中代谢物库大小变化之后的差异外,我们还通过分析组成型过表达拟南芥己糖激酶AtHXK1的转基因植物,评估了果实发育过程中己糖磷酸化的影响。对发育中果实的总己糖激酶活性分析表明,野生型和转基因果实的己糖激酶活性均随发育而降低,但转基因系相对于野生型的相对活性随发育而增加。相反,逐点分析和主成分分析均表明,这些品系的代谢表型在发育过程中与野生型的差异变小。总之,本文提供的数据表明,己糖磷酸化的影响在果实发育过程中逐渐减弱,并突出了更高时间分辨率代谢研究的重要性。