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三种石珊瑚荧光上升动力学的昼夜和季节变化

Diel and seasonal changes in fluorescence rise kinetics of three scleractinian corals.

作者信息

Hill Ross, Ralph Peter J

机构信息

Institute for Water and Environmental Resource Management and Department of Environmental Sciences, University of Technology, Sydney, Westbourne Street, Gore Hill, NSW 2065, Australia.

出版信息

Funct Plant Biol. 2005 Jul;32(6):549-559. doi: 10.1071/FP05017.

Abstract

The effect of diel oscillations in light on the photosynthetic response of three coral species during summer and winter was studied. Fast induction curves revealed detailed information on primary photochemistry as well as redox states of electron acceptors in photosystem II (PSII). The comparison between seasons revealed that similar physiological mechanisms were operating in response to high-light conditions throughout the year and that environmental variables, such as temperature, had no measurable effect between seasons. A diurnal hysteresis was seen in both seasons in F / F as well as in the fast induction curves, where photosynthetic capacity was lower in the afternoon than in the morning when light intensities were the same. This suggests the operation of dynamic down regulation, following exposure to midday high light. Fast induction curve analysis revealed a decline in the O, J, I and P steps towards midday and a rapid recovery by the late afternoon. The decrease in J and its rapid recovery indicated a drop in the rate of Q reduction as a result of an increase in non-photochemical quenching (NPQ). The P step increased in amplitude in the first hours of sunlight, which suggests an increased oxidation of the plastoquinone (PQ) pool and a greater capacity for electron transport. Similarly, a rise in F / F was observed within the first hour of sunlight. This response was attributed to the dark reduction of the PQ pool, induced by night time anaerobic conditions and possibly oxygen-dependent chlororespiration, which would lead to a state 2 transition. The early morning removal of chlororespiration and hypoxic conditions would have returned the photosystems to state 1, resulting in the increased photochemical efficiency of the zooxanthellae.

摘要

研究了夏季和冬季光的昼夜振荡对三种珊瑚物种光合响应的影响。快速诱导曲线揭示了关于原初光化学以及光系统II(PSII)中电子受体氧化还原状态的详细信息。季节间的比较表明,全年对高光条件的响应存在相似的生理机制,并且温度等环境变量在季节间没有可测量的影响。在F / F以及快速诱导曲线中,两个季节均出现了昼夜滞后现象,即当光强相同时,下午的光合能力低于上午。这表明在中午高光照射后存在动态下调机制。快速诱导曲线分析显示,接近中午时O、J、I和P步骤下降,下午晚些时候迅速恢复。J的下降及其快速恢复表明由于非光化学猝灭(NPQ)增加,Q还原速率下降。在日照的最初几个小时内,P步骤的幅度增加,这表明质体醌(PQ)池的氧化增加以及电子传递能力增强。同样,在日照的第一个小时内观察到F / F上升。这种响应归因于夜间厌氧条件以及可能的氧依赖型氯呼吸诱导的PQ池暗还原,这将导致状态2转变。清晨氯呼吸和缺氧条件的消除会使光系统恢复到状态1,从而导致虫黄藻的光化学效率提高。

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