Scott P, Lange A J, Pilkis S J, Kruger N J
Department of Plant Sciences, University of Oxford, UK.
Plant J. 1995 Mar;7(3):461-9. doi: 10.1046/j.1365-313x.1995.7030461.x.
The aim of this work was to investigate the role of fructose 2,6-bisphosphate (Fru 2,6-P2) during photosynthesis. The level of Fru 2,6-P2 in tobacco plants was elevated by the introduction of a modified mammalian gene encoding 6-phosphofructo-2-kinase (6-PF-2-K). Estimates of the metabolite control coefficient (C) for Fru 2,6-P2 levels in response to increased 6-PF-2-K activity, suggest that small increases in 6-PF-2-K activity have little effect upon steady-state Fru 2,6-P2 levels (C = +0.08 for a 0-58% increase in 6-PF-2-K activity). However, larger changes resulted in dramatic rises in Fru 2,6-P2 levels (C = +3.35 for 206-268% increase in 6-PF-2-K activity). Transgenic plants contained Fru 2,6-P2 levels in the dark that ranged from 104 to 230% of the level in wild-type tobacco. Plants with altered levels of Fru 2,6-P2 were used to determine the effects of this signal metabolite upon carbohydrate metabolism during the initial phase of the light period. Here we provide direct evidence that Fru 2,6-P2 contributes to the regulation of carbon partitioning in tobacco leaves by inhibiting sucrose synthesis.
这项工作的目的是研究果糖-2,6-二磷酸(Fru 2,6-P2)在光合作用中的作用。通过导入编码6-磷酸果糖-2-激酶(6-PF-2-K)的修饰哺乳动物基因,提高了烟草植株中Fru 2,6-P2的水平。对Fru 2,6-P2水平响应6-PF-2-K活性增加的代谢物控制系数(C)的估计表明,6-PF-2-K活性的小幅增加对稳态Fru 2,6-P2水平影响不大(6-PF-2-K活性增加0-58%时,C = +0.08)。然而,更大的变化导致Fru 2,6-P2水平急剧上升(6-PF-2-K活性增加206-268%时,C = +3.35)。转基因植物在黑暗中的Fru 2,6-P2水平为野生型烟草的104%至230%。利用Fru 2,6-P2水平改变的植株来确定这种信号代谢物在光照期初始阶段对碳水化合物代谢的影响。在此,我们提供直接证据表明,Fru 2,6-P2通过抑制蔗糖合成来促进烟草叶片中碳分配的调节。