Institute of Plant Biotechnology, University of Stellenbosch, Merriman Avenue, Stellenbosch 7602, South Africa.
Planta. 2010 Feb;231(3):595-608. doi: 10.1007/s00425-009-1069-1. Epub 2009 Dec 2.
Analyses of transgenic sugarcane clones with 45-95% reduced cytosolic pyrophosphate: D-fructose-6-phosphate 1-phosphotransferase (PFP, EC 2.7.1.90) activity displayed no visual phenotypical change, but significant changes were evident in in vivo metabolite levels and fluxes during internode development. In three independent transgenic lines, sucrose concentrations increased between three- and sixfold in immature internodes, compared to the levels in the wildtype control. There was an eightfold increase in the hexose-phosphate:triose-phosphate ratio in immature internodes, a significant restriction in the triose phosphate to hexose phosphate cycle and significant increase in sucrose cycling as monitored by (13)C nuclear magnetic resonance. This suggests that an increase in the hexose-phosphate concentrations resulting from a restriction in the conversion of hexose phosphates to triose phosphates drive sucrose synthesis in the young internodes. These effects became less pronounced as the tissue matured. Decreased expression of PFP also resulted in an increase of the ATP/ADP and UTP/UDP ratios, and an increase of the total uridine nucleotide and, at a later stage, the total adenine nucleotide pool, revealing strong interactions between PPi metabolism and general energy metabolism. Finally, decreased PFP leads to a reduction of PPi levels in older internodes indicating that in these developmental stages PFP acts in the gluconeogenic direction. The lowered PPi levels might also contribute to the absence of increases in sucrose contents in the more mature tissues of transgenic sugarcane with reduced PFP activity.
分析具有 45-95%减少的细胞质焦磷酸:D-果糖-6-磷酸 1-磷酸转移酶(PFP,EC 2.7.1.90)活性的转基因甘蔗克隆,没有表现出明显的表型变化,但在节间发育过程中的体内代谢物水平和通量有明显变化。在三个独立的转基因系中,与野生型对照相比,未成熟节间的蔗糖浓度增加了 3 到 6 倍。未成熟节间的己糖磷酸:三糖磷酸比值增加了 8 倍,三磷酸磷酸至己糖磷酸循环受到显著限制,蔗糖循环显著增加,如(13)C 核磁共振监测所示。这表明,由于己糖磷酸向三糖磷酸的转化受到限制,导致己糖磷酸浓度增加,从而驱动年轻节间的蔗糖合成。随着组织的成熟,这些影响变得不那么明显。PFP 的表达减少也导致 ATP/ADP 和 UTP/UDP 比值增加,以及总尿嘧啶核苷酸增加,在后期阶段,总腺嘌呤核苷酸池增加,表明 PPi 代谢和一般能量代谢之间存在强烈相互作用。最后,降低的 PFP 导致较老节间中 PPi 水平降低,表明在这些发育阶段 PFP 起向糖异生方向作用。降低的 PPi 水平也可能导致具有降低的 PFP 活性的转基因甘蔗中较成熟组织中蔗糖含量增加。