Khangulov S V, Gol'dfel'd M G
Biofizika. 1975 Jul-Aug;20(4):652-5.
Relationship between the rate of dark fall of ESR I signal in the chloroplasts and light intensity 710 nm was studied. It is shown that the kinetics of the signal drop at sufficiently high levels of intensity is a biphase one. The fast phase (2 sec) disappears in the presence of an inhibitor of noncyclic electron transfer. It is concluded that the kinetics of electron transport is not described within the concept of the linear chain of electron carriers and a suggestion is put forward concerning a possible mechanism of this process which depends on the participation of plastoquinone in electron transport.
研究了叶绿体中ESR I信号暗下降速率与710nm光强之间的关系。结果表明,在足够高的光强水平下,信号下降的动力学是双相的。快速相(2秒)在非循环电子传递抑制剂存在时消失。得出结论,电子载体线性链的概念无法描述电子传递的动力学,并提出了一个关于该过程可能机制的建议,该机制取决于质体醌在电子传递中的参与。