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Photosynthetic Capacity Is Differentially Affected by Reductions in Sedoheptulose-17-Bisphosphatase Activity during Leaf Development in Transgenic Tobacco Plants

机译:减少对光合能力的影响不同 发育过程中Sedoheptulose-17-Bisphosphatase活性的变化 在转基因烟草植物中

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摘要

The impact of reduced sedoheptulose-1,7-bisphosphatase (SBPase) activity on photosynthetic capacity and carbohydrate status was examined during leaf expansion and maturation in antisense transgenic tobacco (Nicotiana tabacum L. cv Samsun) plants. In wild-type plants, photosynthetic capacity was lowest in young expanding leaves and reached a maximum in the fully expanded, mature leaves. In contrast, the transgenic antisense SBPase plants had the highest photosynthetic rates in the young expanding leaves and lowest rates in the mature leaves. In the mature, fully expanded leaves of the transgenic plants photosynthetic capacity was closely correlated with the level of SBPase activity. However, in the youngest leaves of the SBPase antisense plants, photosynthetic rates were close to, or higher than, those observed in wild-type plants, despite having a lower SBPase activity than the equivalent wild-type leaves. Reductions in SBPase activity affected carbohydrate levels in both the mature and young developing leaves. The overall trend was for decreased SBPase activity to lead to reductions in carbohydrate levels, particularly in starch. However, these changes in carbohydrate content were also dependent on the developmental status of the leaf. For example, in young expanding leaves of plants with the smallest reductions in SBPase activity, the levels of starch were higher than in wild-type plants. These data suggest that the source status of the mature leaves is an important determinant of photosynthetic development.
机译:在反义转基因烟草(Nicotiana tabacum L. cv Samsun)植物的叶片扩展和成熟过程中,检查了降低的七庚糖-1,7-双磷酸酶(SBPase)活性对光合能力和碳水化合物状态的影响。在野生型植物中,年轻的扩展叶片的光合能力最低,而完全扩展的成熟叶片则达到最大。相反,转基因反义SBPase植物在年轻的扩张叶片中具有最高的光合速率,而在成熟叶片中具有最低的光合速率。在成熟,完全扩展的转基因植物叶片中,光合作用能力与SBPase活性水平密切相关。但是,在SBPase反义植物的最年轻叶片中,尽管其SBPase活性低于同等野生型叶片,但其光合速率接近或高于野生型植物中观察到的速率。 SBPase活性的降低会影响成熟叶片和年轻叶片中碳水化合物的含量。总体趋势是SBPase活性降低,导致碳水化合物含量降低,尤其是淀粉含量降低。 但是,碳水化合物含量的这些变化还取决于 叶片的发育状况。例如,在年轻时 SBPase活性降低最小的植物叶片, 淀粉水平高于野生型植物。这些数据 表明成熟叶片的来源状况是重要的 光合作用发育的决定因素。

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