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抑制光合作用的光反应:用分离的菠菜叶绿体进行的研究。

Inhibition of photosynthetic reactions by light : A study with isolated spinach chloroplasts.

机构信息

Botanisches Institut der Universität, Universitätsstrasse 1, D-4000, Düsseldorf 1, Germany.

出版信息

Planta. 1985 Feb;163(2):218-26. doi: 10.1007/BF00393510.

Abstract

Illumination of isolated intact chloroplasts of Spinacia oleracea L. for 10 min with 850 W m(-2) red light in the absence of substrate levels of bicarbonate caused severe inhibition of subsequently measured photosynthetic activities. The capacity of CO2-dependent O2 evolution and of non-cyclic electron transport were impaired to similar degrees. This photoinactivation was prevented by addition of bicarbonate which allowed normal carbon metabolism to proceed during preillumination. Photoinhibition of electron transport was observed likewise upon illumination of intact or broken chloroplasts when efficient electron acceptors were absent. Addition of uncouplers did not influence the extent of inhibition. Studies of partial electron-transport reactions indicated that the activity of both photosystems was affected by light. In addition, the water-oxidation system or its connection to photosystem II seemed to be impaired. Preillumination did not cause uncoupling of photophosphorylation. Chlorophyll-fluorescence data obtained at room temperature and at 77 K are consistent with the view that photosystem-II reaction centers were altered. Addition of superoxide dismutase (EC 1.15.1.1), catalase (EC 1.11.1.6) or 1,4-diazabicyclo(2,2,2)octane to isolated thylakoids prior to preillumination substantially diminished photoinhibition. This result shows that reactive oxygen species were involved in the damage. It is concluded that bright light, which normally does not damage the photosynthetic apparatus, may exert the described destructive effects under conditions that restrict metabolic turnover of photosynthetic energy.

摘要

将完整的菠菜叶绿体在无碳酸氢盐底物水平的条件下用 850 W m(-2) 的红光照射 10 分钟,会严重抑制随后测量的光合作用活性。CO2 依赖性 O2 释放和非循环电子传递的能力受到相似程度的损害。这种光失活可以通过添加碳酸氢盐来防止,在预照期间允许正常的碳代谢进行。当缺乏有效的电子受体时,完整或破碎的叶绿体的光照也会观察到电子传递的光抑制。添加解偶联剂不会影响抑制的程度。部分电子传递反应的研究表明,两个光系统的活性都受到光的影响。此外,水氧化系统或其与光系统 II 的连接似乎受到损害。预照不会引起磷酸化解偶联。在室温下和 77 K 下获得的叶绿素荧光数据表明,光系统 II 反应中心发生了变化。在预照之前将超氧化物歧化酶 (EC 1.15.1.1)、过氧化氢酶 (EC 1.11.1.6) 或 1,4-二氮杂双环(2.2.2)辛烷添加到分离的类囊体中,可大大减少光抑制。这一结果表明,活性氧参与了损伤过程。因此,可以得出结论,正常情况下不会破坏光合作用装置的强光,在限制光合作用能量代谢周转的条件下,可能会产生所述的破坏性影响。

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