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负反馈调节负责对暴露于动态光照环境下的植物和蓝细菌的光合活性进行非线性调节。

Negative feedback regulation is responsible for the non-linear modulation of photosynthetic activity in plants and cyanobacteria exposed to a dynamic light environment.

作者信息

Nedbal Ladislav, Brezina Vítezslav, Adamec Frantisek, Stys Dalibor, Oja Vello, Laisk Agu

机构信息

Institute of Landscape Ecology CAS, University of S. Bohemia, Zámek 136, CZ-37333 Nové Hrady, Czech Republic.

出版信息

Biochim Biophys Acta. 2003 Oct 17;1607(1):5-17. doi: 10.1016/j.bbabio.2003.08.005.

Abstract

Photosynthetic organisms exposed to a dynamic light environment exhibit complex transients of photosynthetic activities that are strongly dependent on the temporal pattern of the incident irradiance. In a harmonically modulated light of intensity I approximately const.+sin(omegat), chlorophyll fluorescence response consists of a steady-state component, a component modulated with the angular frequency of the irradiance omega and several upper harmonic components (2omega, 3omega and higher). Our earlier reverse engineering analysis suggests that the non-linear response can be caused by a negative feedback regulation of photosynthesis. Here, we present experimental evidence that the negative feedback regulation of the energetic coupling between phycobilisome and Photosystem II (PSII) in the cyanobacterium Synechocystis sp. PCC6803 indeed results in the appearance of upper harmonic modes in the chlorophyll fluorescence emission. Dynamic changes in the coupling of the phycobilisome to PSII are not accompanied by corresponding antiparallel changes in the Photosystem I (PSI) excitation, suggesting a regulation limited to PSII. Strong upper harmonic modes were also found in the kinetics of the non-photochemical quenching (NPQ) of chlorophyll fluorescence, of the P700 redox state and of the CO(2) assimilation in tobacco (Nicotiana tabaccum) exposed to harmonically modulated light. They are ascribed to negative feedback regulation of the reactions of the Calvin-Benson cycle limiting the photosynthetic electron transport. We propose that the observed non-linear response of photosynthesis may also be relevant in a natural light environment that is modulated, e.g., by ocean waves, moving canopy or by varying cloud cover. Under controlled laboratory conditions, the non-linear photosynthetic response provides a new insight into dynamics of the regulatory processes.

摘要

暴露于动态光照环境中的光合生物表现出复杂的光合活性瞬变,这强烈依赖于入射辐照度的时间模式。在强度为I≈常数 + sin(ωt) 的谐波调制光下,叶绿素荧光响应由一个稳态分量、一个以辐照度角频率ω调制的分量以及几个高次谐波分量(2ω、3ω及更高次)组成。我们早期的逆向工程分析表明,这种非线性响应可能是由光合作用的负反馈调节引起的。在这里,我们提供实验证据表明,集胞藻6803中藻胆体与光系统II(PSII)之间能量耦合的负反馈调节确实导致了叶绿素荧光发射中高次谐波模式的出现。藻胆体与PSII耦合的动态变化并未伴随着光系统I(PSI)激发的相应反平行变化,这表明这种调节仅限于PSII。在暴露于谐波调制光的烟草(Nicotiana tabaccum)中,叶绿素荧光的非光化学猝灭(NPQ)动力学、P700氧化还原状态以及CO₂同化动力学中也发现了强烈的高次谐波模式。它们归因于卡尔文 - 本森循环反应的负反馈调节,该调节限制了光合电子传递。我们提出,观察到的光合作用非线性响应在例如由海浪、移动的冠层或变化的云量调制的自然光环境中可能也具有相关性。在受控的实验室条件下,非线性光合响应为调节过程的动力学提供了新的见解。

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