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Photoinhibition in vivo of Photosystem II reactions during development of the photosystems of wheat seedlings.

机译:小麦幼苗光系统发育过程中光系统II反应的体内光抑制作用。

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摘要

Photoinhibition of O2 evolution and reactions leading to millisecond-delayed light emission (ms-DLE) of chlorophyll by illumination of leaves with excess white light were investigated in wheat seedlings greened for different times in a special chamber with constant conditions (20 degrees C; CO2 and humidity). A sharp reduction in initial and steady state rates of O2 evolution and in the intensity of different components of ms-DLE under excess light on the stage of lag-phase of chlorophyll biosynthesis (4-6 h of greening) were observed. An increasing stability of the oxygen-evolving process and ms-DLE of chlorophyll during formation of the thylakoid membrane photosystems (12-24 h of greening) was shown. Rifampicin did not influence the stability of oxygen evolution whereas cycloheximide led to the intensification of photoinhibition of the initial and steady-state rates of oxygen evolution under the inhibitory light action. The early stages of photosystems formation during short time of greening of etiolated seedlings were more sensitive to the action of inhibitory light, possibly due to a weak interaction of the oxygen-evolving system components and connection with reaction centers of Photosystem II..
机译:在恒定条件下(20摄氏度; CO2)在一个特殊的房间中对绿化的小麦幼苗进行了不同时间的绿化研究,研究了O2的光抑制作用以及通过用过量白光照射叶片导致叶绿素延迟毫秒发光的反应(ms-DLE)。和湿度)。在叶绿素生物合成的滞后阶段(绿化4-6 h),观察到过量光下O 2释放的初始和稳态速率以及ms-DLE不同成分的强度急剧下降。显示了类囊体膜光系统形成过程中(绿化12-24小时),放氧过程和叶绿素的ms-DLE的稳定性增加。利福平不影响氧释放的稳定性,而环己酰亚胺导致在抑制光作用下光抑制初始和稳态氧释放速率的光抑制作用增强。在黄化幼苗的短时间绿化期间,光系统形成的早期阶段对抑制光的作用更为敏感,这可能是由于析氧系统组分之间的相互作用较弱以及与光系统II的反应中心的连接所致。

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