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Increase in the activity of fructose-1,6-bisphosphatase in cytosol affects sugar partitioning and increases the lateral shoots in tobacco plants at elevated CO2 levels

机译:二氧化碳水平升高时,烟叶中果糖-1,6-双磷酸酶活性的增加会影响糖的分配并增加烟草植株的侧枝

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摘要

We generated transgenic tobacco plants with high levels of fructose-1,6-bisphosphatase expressing cyanobacterialfructose-1,6-/sedoheptulose-1,7-bisphosphatase in the cytosol. At ambient CO2 levels (360 ppm), growth, photosynthetic activity, and fresh weight were unchanged but the sucrose/hexose/starch ratio was slightly altered in the transgenic plants compared with wild-type plants. At elevated CO2 levels (1200 ppm), lateral shoot, leaf number, and fresh weight were significantly increased in the transgenic plants. Photosynthetic activity was also increased. Hexose accumulated in the upper leaves in the wild-type plants, while sucrose and starch accumulated in the lower leaves and lateral shoots in the transgenic plants. These findings suggest that cytosolic fructose-1,6-bisphosphatase contributes to the efficient conversion of hexose into sucrose, and that the change in carbon partitioning affects photosynthetic capacity and morphogenesis at elevated CO2 levels.
机译:我们产生了转基因烟草植物,其果胶中高水平的果糖-1,6-双磷酸酶表达胞浆中的氰细菌果糖-1,6- /七庚二糖-1,7-双磷酸酶。在环境CO2水平(360 ppm)下,与野生型植物相比,转基因植物的生长,光合活性和鲜重没有变化,但蔗糖/己糖/淀粉的比例略有改变。在升高的二氧化碳水平(1200 ppm)下,转基因植物的侧枝,叶数和鲜重显着增加。光合活性也增加了。在野生型植物中,己糖积累在上部叶片中,而转基因植物中蔗糖和淀粉积累在下部叶片和侧芽中。这些发现表明,胞质果糖-1,6-双磷酸酶有助于将己糖有效转化为蔗糖,并且碳分配的变化会影响二氧化碳水平升高时的光合能力和形态发生。

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