Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Sensing environmental temperature change through imbalances between energy supply and energy consumption: Redox state of photosystem II

作者:N. P. A. Hüner, Denis P. Maxwell, Gordon R. Gray, Leonid V. Savitch, M. Król, Alexander G. Ivanov, Stefan Falk · 发表于:Physiologia Plantarum · 年份:1996 · DOI:10.1034/j.1399-3054.1996.980218.x · 被引用次数:210 · 研究领域:Photosynthetic Processes and Mechanisms、Photoreceptor and optogenetics research、Spectroscopy and Quantum Chemical Studies

A basic requirement of all photosynthetic organisms is a balance between overall energy supply through temperature‐independent photochemical reactions and energy consumption through the temperature‐dependent biochemical reactions of photosynthetic electron transport and contiguous metabolic pathways. Since the turnover of photosystem II (PSII) reaction centers is a limiting step in the conversion of light energy into ATP and NADPH, any energy imbalance may be sensed through modulation of the redox state of PSII. This can be estimated in vivo by chlorophyll a fluorescence as changes in the redox state of PSII, or photosystem II excitation pressure, which reflects changes in the redox poise of intersystem electron transport carriers. Through comparisons of photosynthetic adjustment, we show that growth at low temperature mimics growth at high light. We conclude that terrestrial plants, green algae and cyanobacteria do not respond to changes in growth temperature or growth irradiance per se, but rather, respond to changes in the redox state of intersystem electron transport as reflected by changes in PSII excitation pressure, We suggest that this chloroplastic redox sensing mechanism may be an important component for sensing abiotic stresses in general. Thus, in addition to its role in energy transduction, the chloroplast may also be considered a primary sensor of environmental change through a redox sensing/signalling mechanism that acts synergistically with other signal transd...