Activity regulation and physiological impacts of maize C(4)-specific phosphoenolpyruvate carboxylase overproduced in transgenic rice plants.

磷酸烯醇式丙酮酸羧化酶 光合作用 转基因水稻 生物 鲁比斯科 C4光合作用 植物生理学 转基因 植物 转基因作物 呼吸 固碳 生物化学 化学 基因
作者
Hiroshi Fukayama,M.D. Hatch,Tesshu Tamai,Hiroko Tsuchida,Sizue Sudoh,Robert T. Furbank,Mitsue Miyao
出处
期刊:Photosynthesis Research [Springer Nature]
卷期号:77 (2/3): 227-239 被引量:92
标识
DOI:10.1023/a:1025861431886
摘要

Phosphoenolpyruvate carboxylase (PEPC) was overproduced in the leaves of rice plants by introducing the intact maize C4-specific PEPC gene. Maize PEPC in transgenic rice leaves underwent activity regulation through protein phosphorylation in a manner similar to endogenous rice PEPC but contrary to that occurring in maize leaves, being downregulated in the light and upregulated in the dark. Compared with untransformed rice, the level of the substrate for PEPC (phosphoenolpyruvate) was slightly lower and the product (oxaloacetate) was slightly higher in transgenic rice, suggesting that maize PEPC was functioning even though it remained dephosphorylated and less active in the light. 14CO2 labeling experiments indicated that maize PEPC did not contribute significantly to the photosynthetic CO2 fixation of transgenic rice plants. Rather, it slightly lowered the CO2 assimilation rate. This effect was ascribable to the stimulation of respiration in the light, which was more marked at lower O2 concentrations. It was concluded that overproduction of PEPC does not directly affect photosynthesis significantly but it suppresses photosynthesis indirectly by stimulating respiration in the light. We also found that while the steady-state stomatal aperture remained unaffected over a wide range of humidity, the stomatal opening under non-steady-state conditions was destabilized in transgenic rice.
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