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C4 Photosynthesis (The Effects of Leaf Development on the CO2-Concentrating Mechanism and Photorespiration in Maize).

机译:C4光合作用(叶片发育对玉米中CO2浓缩机制和光呼吸的影响)。

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摘要

The effect of O2 on photosynthesis was determined in maize (Zea mays) leaves at different developmental stages. The optimum level of O2 for maximum photosynthetic rates was lower in young and senescing tissues (2-5 kPa) than in mature tissue (9 kPa). Inhibition of photosynthesis by suboptimal levels of O2 may be due to a requirement for functional mitochondria or to cyclic/pseudocyclic photophosphorylation in chloroplasts; inhibition by supraoptimal levels of O2 is considered to be due to photorespiration. Analysis of a range of developmental stages (along the leaf blade and at different leaf ages and positions) showed that the degree of inhibition of photosynthesis by supraoptimal levels of O2 increased rapidly once the ribulose-1,5-bisphosphate carboxylase/oxygenase and chlorophyll contents were below a critical level and was similar to that of C3 plants. Tissue having a high sensitivity of photosynthesis to O2 may be less effective in concentrating CO2 in the bundle sheath cells due either to limited function of the C4 cycle or to higher bundle sheath conductance to CO2. An analysis based on the kinetic properties of ribulose-1,5-bisphosphate carboxylase/oxygenase was used to predict the maximum CO2 level concentrated in bundle sheath cells at a given degree of inhibition of photosynthesis by supraoptimal levels of O2.
机译:在不同发育阶段的玉米(Zea mays)叶片中测定了O2对光合作用的影响。在年轻和衰老的组织(2-5 kPa)中,最大光合速率的最佳氧气水平低于成熟组织(9 kPa)。最佳的O2含量抑制光合作用可能是由于功能性线粒体的需要或叶绿体中环状/假环光磷酸化的缘故。最佳水平的O2抑制被认为是由于光呼吸引起的。对一系列发育阶段(沿着叶片以及在不同叶片年龄和位置的叶片)的分析表明,一旦核糖-1,5-双磷酸羧化酶/加氧酶和叶绿素含量达到最高水平,O2对光合作用的抑制程度就会迅速增加。低于临界水平,与C3植物相似。由于C4循环的功能有限或较高的束鞘对CO2的电导率,具有光合作用对O2的高敏感性的组织在将束鞘细胞中的CO2浓缩方面可能不太有效。基于核糖-1,5-双磷酸羧化酶/加氧酶的动力学特性进行的分析用于预测在给定的光合作用抑制程度(最佳水平的O2)下,束鞘细胞中浓缩的最大CO2水平。

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