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体内光合作用电子传递能力的变化及其对核酮糖二磷酸羧化酶的光调节的影响。

Variation in photosynthetic electron transport capacity in vivo and its effects on the light modulation of ribulose bisphosphate carboxylase.

机构信息

Department of Blant and Soil Biology, University of California, 108 Hilgard Hall, 94720, Berkely, CA, USA.

出版信息

Photosynth Res. 1986 Jan;8(3):249-56. doi: 10.1007/BF00037132.

Abstract

Photosynthetic electron transport capacity was varied in vivo in sugar beets using iron deficiency, and its effects on the light modulation of ribulose bisphosphate carboxylase (RuBPCase) studied. Three treatment groups corresponding to decreasing amounts of thylakoids per leaf area were examined: iron sufficient (control), moderately iron-stressed, and severely iron-stressed. Reduction in electron transport capacity in vivo was correlated with a substantial decrease in the level of RuBPCase activation, even at saturating irradiances. These results indicate a direct relationship between RuBPCase activation and photosynthetic electron transport. In addition, our data suggest that the activation of RuBPCase could not solely account for the increases in the photosynthetic rate at high irradiances; RuBPCase reached maximal activation at irradiances well below light saturation for net photosynthesis.

摘要

采用缺铁的方法在体内改变了甜菜的光合电子传递能力,并研究了其对核酮糖-1,5-二磷酸羧化酶(RuBPCase)的光调节的影响。检查了三组对应于每叶面积的类囊体数量减少的处理组:铁充足(对照),中度缺铁胁迫和严重缺铁胁迫。体内电子传递能力的降低与 RuBPCase 激活水平的大幅下降相关,即使在饱和辐照度下也是如此。这些结果表明 RuBPCase 的激活与光合电子传递之间存在直接关系。此外,我们的数据表明,RuBPCase 的激活不能完全解释高光强下光合作用速率的增加;RuBPCase 在远低于净光合作用光饱和的辐照度下达到最大激活。

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