首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on Chlamydomonas: State Transitions in Chlamydomonas reinhardtii. The Role of the Mehler Reaction in State 2-to-State 1 Transition
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Focus Issue on Chlamydomonas: State Transitions in Chlamydomonas reinhardtii. The Role of the Mehler Reaction in State 2-to-State 1 Transition

机译:衣藻的焦点问题:莱茵衣藻的状态转变。 Mehler反应在状态2到状态1过渡中的作用

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摘要

The light intensity-dependent transition to state 1 of dark-adapted anaerobic state 2 Chlamydomonas reinhardtii cells is stimulated by oxygen and by other electron acceptors for photosystem I, such as oxaloacetate and methylviologen. This suggests that the transition to state 1 requires the oxidation of the intersystem chain by photosystem I photochemistry. On the other hand, the mere oxidation in the dark of the chain—by addition of O2—leads only to a slow and incomplete transition. The light-driven stimulation by O2 of the state 1 transition is saturated at an O2 concentration of 15 to 20 μm, definitely higher than that of respiration. We suggest that this may represent the affinity for oxygen of the Mehler reaction, a conclusion that is confirmed by the observations that mitochondrial respiration is apparently not involved in modulating state 2-to-state 1 transition. The catalysis of the state 2-to-state 1 transition upon illumination of anaerobically adapted algae might represent, therefore, a relevant physiological role of this process in C. reinhardtii.
机译:氧气和光系统I的其他电子受体(例如草酰乙酸盐和甲基紫精)会刺激光强度依赖的过渡到暗适应厌氧状态2衣藻衣藻的状态1。这表明向状态1的转变需要通过光系统I光化学氧化系统间链。另一方面,仅在链的黑暗中氧化(通过添加O2)只会导致缓慢且不完全的过渡。 O2的状态1过渡的光驱动刺激在15至20μm的O2浓度下饱和,绝对高于呼吸的浓度。我们建议这可能代表了对Mehler反应的氧亲和力,这一结论已得到以下观察结果的证实:线粒体呼吸作用显然不参与调节状态2到状态1的转变。因此,在厌氧适应性藻类的光照下,状态2到状态1过渡的催化作用可能代表了该过程在莱茵衣藻中的相关生理作用。

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