Junker Bjoern H, Wuttke Rene, Nunes-Nesi Adriano, Steinhauser Dirk, Schauer Nicolas, Büssis Dirk, Willmitzer Lothar, Fernie Alisdair R
Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, D-14476 Golm, Germany.
Plant Cell Physiol. 2006 Feb;47(2):277-89. doi: 10.1093/pcp/pci247. Epub 2005 Dec 22.
Modification of tuber carbohydrate metabolism by the tuber-specific expression of a yeast invertase targeted to the cytosol or apoplast has previously been demonstrated to have diverse effects on tuber growth and metabolism. In the current study, we generated plants exhibiting tuber-specific expression of the same enzyme targeted to the vacuole. Enzymatic analysis of the carbohydrate levels of the tuber revealed dramatic decreases in sucrose content coupled with large increases in the levels of glucose and hexose phosphates, but unaltered starch content in the transformants. Analysis of the key enzyme of glycolysis suggests that this pathway is down-regulated in the transformants. Despite these changes in metabolite pools and enzyme activity, few consistent changes could be observed in the estimated metabolic fluxes following incubation of isolated tuber discs in labelled glucose. The analysis of the relative levels of a wide range of metabolites using a gas chromatography-mass spectrometry (GC-MS)-based metabolite profiling method revealed large changes in the levels of fructose and decreases in a range of other sugars, but very few changes in the contents of organic and amino acids. This metabolic profile is remarkably consistent with that obtained following expression of the invertase in the apoplastic compartment, providing circumstantial evidence for the endocytotic trafficking of sugars within potato tuber parenchyma. Finally, the results of this study are compared with those from other plant species and the relative roles of the vacuolar isoform of the enzyme are contrasted.
此前已证明,通过将酵母转化酶靶向细胞质或质外体进行块茎特异性表达来改变块茎碳水化合物代谢,会对块茎生长和代谢产生多种影响。在本研究中,我们培育出了表现出将相同酶靶向液泡进行块茎特异性表达的植株。对块茎碳水化合物水平的酶促分析表明,转化体中蔗糖含量显著降低,同时葡萄糖和己糖磷酸水平大幅增加,但淀粉含量未改变。对糖酵解关键酶的分析表明,该途径在转化体中被下调。尽管代谢物库和酶活性发生了这些变化,但在将分离的块茎切片在标记葡萄糖中孵育后,估计的代谢通量中几乎没有观察到一致的变化。使用基于气相色谱 - 质谱(GC-MS)的代谢物谱分析方法对多种代谢物的相对水平进行分析,结果显示果糖水平发生了很大变化,其他一系列糖类水平降低,但有机和氨基酸含量变化很少。这种代谢谱与在质外体区室中表达转化酶后获得的代谢谱非常一致,为马铃薯块茎薄壁组织内糖的内吞运输提供了间接证据。最后,将本研究结果与其他植物物种的结果进行了比较,并对比了该酶液泡同工型的相对作用。