Trevanion S. J., Furbank R. T., Ashton A. R.
Cooperative Research Centre for Plant Science, c/o Research School of Biological Sciences, Australian National University, P.O. Box 475, Canberra, ACT 2601, Australia (S.J.T., R.T.F., A.R.A.).
Plant Physiol. 1997 Apr;113(4):1153-1165. doi: 10.1104/pp.113.4.1153.
Flaveria bidentis, a C4 dicot, was transformed with sorghum (a monocot) cDNA clones encoding NADP-malate dehydrogenase (NADP-MDH; EC 1.1.1.82) driven by the cauliflower mosaic virus 35S promoter. Although these constructs were designed for over-expression, many transformants contained between 5 and 50% of normal NADP-MDH activity, presumably by cosense suppression of the native gene. The activities of a range of other photosynthetic enzymes were unaffected. Rates of photosynthesis in plants with less than about 10% of normal activity were reduced at high light and at high [CO2], but were unaffected at low light or at [CO2] below about 150 [mu]L L-1. The large decrease in maximum activity of NADP-MDH was accompanied by an increase in the activation state of the enzyme. However, the activation state was unaffected in plants with 50% of normal activity. Metabolic flux control analysis of plants with a range of activities demonstrates that this enzyme is not important in regulating the steady-state flux through C4 photosynthesis in F. bidentis. Cosense suppression of gene expression was similarly effective in both the mesophyll and bundle-sheath cells. Photosynthesis of plants with very low activity of NADP-MDH in the bundle-sheath cells was only slightly inhibited, suggesting that the presence of the enzyme in this compartment is not essential for supporting maximum rates of photosynthesis.
二齿叶黄菊(一种C4双子叶植物)用由花椰菜花叶病毒35S启动子驱动的编码NADP-苹果酸脱氢酶(NADP-MDH;EC 1.1.1.82)的高粱(一种单子叶植物)cDNA克隆进行转化。尽管这些构建体设计用于过表达,但许多转化体含有正常NADP-MDH活性的5%至50%,推测是通过对天然基因的共义抑制。一系列其他光合酶的活性未受影响。活性低于正常活性约10%的植物在高光强和高[CO2]条件下光合作用速率降低,但在低光强或[CO2]低于约150 μL L-1时不受影响。NADP-MDH最大活性的大幅下降伴随着该酶激活状态的增加。然而,活性为正常活性50%的植物中激活状态未受影响。对一系列活性植物的代谢通量控制分析表明,该酶在调节二齿叶黄菊C4光合作用的稳态通量方面并不重要。基因表达的共义抑制在叶肉细胞和维管束鞘细胞中同样有效。维管束鞘细胞中NADP-MDH活性非常低的植物光合作用仅略有抑制,这表明该隔室中该酶的存在对于支持最大光合作用速率并非必不可少。