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Oxygen Requirement and Inhibition of C4 Photosynthesis . An Analysis of C4 Plants Deficient in the C3 and C4 Cycles

机译:氧气需求与C4光合作用的抑制。 C4和C4循环中C4植物缺失的分析

摘要

The basis for O2 sensitivity of C4 photosynthesis was evaluated using a C4-cycle-limited mutant of Amaranthus edulis (a phosphoenolpyruvate carboxylase-deficient mutant), and a C3-cycle-limited transformant of Flaveria bidentis (an antisense ribulose-1,5-bisphosphate carboxylase/oxygenase [Rubisco] small subunit transformant). Data obtained with the C4-cycle-limited mutant showed that atmospheric levels of O2 (20 kPa) caused increased inhibition of photosynthesis as a result of higher levels of photorespiration. The optimal O2 partial pressure for photosynthesis was reduced from approximately 5 kPa O2 to 1 to 2 kPa O2, becoming similar to that of C3 plants. Therefore, the higher O2 requirement for optimal C4 photosynthesis is specifically associated with the C4 function. With the Rubisco-limited F. bidentis, there was less inhibition of photosynthesis by supraoptimal levels of O2 than in the wild type. When CO2 fixation by Rubisco is limited, an increase in the CO2 concentration in bundle-sheath cells via the C4 cycle may further reduce the oxygenase activity of Rubisco and decrease the inhibition of photosynthesis by high partial pressures of O2 while increasing CO2 leakage and overcycling of the C4 pathway. These results indicate that in C4 plants the investment in the C3 and C4 cycles must be balanced for maximum efficiency. udud
机译:使用紫菜的C4循环受限突变体(磷酸烯醇丙酮酸羧化酶缺陷型突变体)和黄Fla双齿的C3循环受限转化体(反义核糖1,5-)评估了C4光合作用对O2敏感性的基础。双磷酸羧化酶/加氧酶[Rubisco]小亚基转化子)。用C4循环受限的突变体获得的数据表明,由于较高的光呼吸水平,大气中的O2(20 kPa)引起对光合作用的抑制作用增加。用于光合作用的最佳O2分压从大约5 kPa O2降低到1至2 kPa O2,变得与C3植物相似。因此,最佳的C4光合作用对O2的更高需求特别与C4功能相关。与野生型相比,在Rubisco限制的双侧弯曲杆菌中,超最佳水平的O2对光合作用的抑制作用较小。当通过Rubisco固定CO2受到限制时,通过C4循环增加束鞘细胞中CO2的浓度可能会进一步降低Rubisco的加氧酶活性,并降低O2的高分压对光合作用的抑制作用,同时增加CO2的泄漏和环氧化物的过度循环。 C4途径。这些结果表明,在C4工厂中,必须平衡C3和C4周期的投资以实现最大效率。 ud ud

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