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Changes in Photosynthetic Activity and Export of Carbon by Overexpressing a Maize Sucrose-Phosphate Synthase Gene under Elevated CO2 in Transgenic Rice

机译:在转基因水稻中过量表达玉米蔗糖-磷酸合酶基因在玉米中的光合活性和碳输出的变化

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To investigate whether increased sucrose-phosphate synthase (SPS) activity alters photosynthetic activity and/or the export of carbon from leaves under elevated CO2 partial pressure ([CO2]), we raised two lines of transgenic rice (H54-9 and H69-7), each overexpressing a maize SPS gene, and wild-type rice under ambient [CO2] (35 Pa) and elevated [CO2] (100 Pa). Under ambient [CO2], no significant difference was observed between the transgenic and wild-type plants in the levels of sucrose or starch in leaves or the photosynthetic activity; but the carbon export rate was higher in H69-7 than in the wild-type. Under elevated [CO2], photosynthetic activity increased in all plants, but the accumulation of starch was significantly repressed in H54-9, whose SPS activity was about 12.5 times higher than that of the wild-type. The carbon export rate was higher in both transgenic lines than the wild-type. We considered that increased SPS activity in rice plants would promote the export of carbon from leaves and, as a result, starch accumulation in the leaves would be suppressed and/or photosynthetic activity would be promoted under elevated [CO2].
机译:为了研究增加的蔗糖磷酸合酶(SPS)活性是否改变了光合作用和/或在升高的CO2分压([CO2])下从叶片中输出碳,我们提出了两系转基因水稻(H54-9和H69-7) ),每个都过表达玉米SPS基因,并在环境[CO2](35 Pa)和升高的[CO2](100 Pa)下过表达野生型水稻。在环境[CO2]条件下,转基因植物和野生型植物之间的蔗糖或淀粉含量或光合作用没有明显差异。但是H69-7的碳出口率要高于野生型。在升高的[CO2]下,所有植物的光合作用活性均增加,但淀粉的积累在H54-9中受到明显抑制,其SPS活性约为野生型的12.5倍。在两个转基因品系中,碳输出速率均高于野生型。我们认为,水稻植物中SPS活性的增加将促进叶片中碳的输出,因此,在较高的[CO2]下,叶片中的淀粉积累将受到抑制和/或光合活性将得到促进。

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