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向日葵叶片中质体醌库的非光化学还原源于叶绿体呼吸作用。

Nonphotochemical reduction of the plastoquinone pool in sunflower leaves originates from chlororespiration.

作者信息

Feild TS, Nedbal L, Ort DR

出版信息

Plant Physiol. 1998 Apr;116(4):1209-18. doi: 10.1104/pp.116.4.1209.

Abstract

We investigated the relationship between nonphotochemical plastoquinone reduction and chlororespiration in leaves of growth-chamber-grown sunflower (Helianthus annuus L.). Following a short induction period, leaves of previously illuminated sunflower showed a substantially increased level of minimal fluorescence following a light-to-dark transition. This increase in minimal fluorescence was reversed by far-red illumination, inhibited by rotenone or photooxidative methyl viologen treatment, and stimulated by fumigation with CO. Using flash-induced electrochromic absorption-change measurements, we observed that the capacity of sunflower to reduce plastoquinone in the dark influenced the activation state of the chloroplast ATP synthase, although chlororespiratory transmembrane electrochemical potential formation alone does not fully explain our observations. We have added several important new observations to the work of others, forming, to our knowledge, the first strong experimental evidence that chlororespiratory, nonphotochemical plastoquinone reduction and plastoquinol oxidation occur in the chloroplasts of higher plants. We have introduced procedures for monitoring and manipulating chlorores-piratory activity in leaves that will be important in subsequent work aimed at defining the pathway and function of this dark electron flux in higher plant chloroplasts.

摘要

我们研究了生长箱中培育的向日葵(Helianthus annuus L.)叶片中非光化学质体醌还原与叶绿体呼吸之间的关系。经过短暂的诱导期后,先前光照过的向日葵叶片在从光到暗的转变后,最小荧光水平大幅增加。这种最小荧光的增加可被远红光照射逆转,被鱼藤酮或光氧化甲基紫精处理抑制,并被CO熏蒸刺激。使用闪光诱导的电致变色吸收变化测量,我们观察到向日葵在黑暗中还原质体醌的能力影响了叶绿体ATP合酶的激活状态,尽管仅叶绿体呼吸跨膜电化学势的形成并不能完全解释我们的观察结果。我们在其他人的工作基础上增加了几个重要的新观察结果,据我们所知,形成了第一个有力的实验证据,证明高等植物叶绿体中发生叶绿体呼吸、非光化学质体醌还原和质体醌醇氧化。我们引入了监测和操纵叶片中叶绿体呼吸活性的程序,这在后续旨在确定高等植物叶绿体中这种暗电子通量途径和功能的工作中将很重要。

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