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低pH值下光系统II的初级反应。I. 即时荧光和延迟荧光

Primary reactions of photosystem II at low pH. I. Prompt and delayed fluorescence.

作者信息

Van Gorkom H J, Pulles M P, Haveman J, Den Haan G A

出版信息

Biochim Biophys Acta. 1976 Feb 16;423(2):217-26. doi: 10.1016/0005-2728(76)90180-8.

Abstract

Prompt and delayed chlorophyll fluorescence have been studied in broken spinach chloroplasts at pH values down to 2.6. No direct effect of low pH on the primary charge separation in Photosystem II was observed. The irreversible inactivation of a secondary electron donor in a narrow pH range around pH 4.5 was demonstrated. At lower pH values the photooxidized form of a more primary electron donor, revealed by its efficient fluorescence quenching, was reduced with a half time of about 200 mus, 25% by another electron donor and 75% by back reaction with the reduced acceptor. The electron donation had a half time of 800 mus and was practically irreversible. The back reaction had a pH dependent half time: about 270 mus at pH 4 and increasing towards lower pH. The competition of both reactions resulted in a net efficiency of the charge separation at pH 4 of 25%, increasing towards lower pH.

摘要

已在pH值低至2.6的破碎菠菜叶绿体中研究了即时叶绿素荧光和延迟叶绿素荧光。未观察到低pH对光系统II中初级电荷分离的直接影响。已证实在pH 4.5左右的狭窄pH范围内,二级电子供体发生不可逆失活。在较低pH值下,一种更初级电子供体的光氧化形式(通过其有效的荧光猝灭显示)以约200微秒的半衰期被还原,其中25%由另一种电子供体还原,75%通过与还原受体的反向反应还原。电子供体的半衰期为800微秒,实际上是不可逆的。反向反应的半衰期与pH有关:在pH值为4时约为270微秒,并随着pH值降低而增加。两种反应的竞争导致pH值为4时电荷分离的净效率为25%,随着pH值降低而增加。

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