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在光合作用诱导期内,通过累积短光脉冲照射来光灭活光系统 II。

Photoinactivation of photosystem II by cumulative exposure to short light pulses during the induction period of photosynthesis.

机构信息

Shanghai Institute of Plant Physiology, Chinese Academy of Sciences, 300 Fonglin Road, 200032, Shanghai, China.

出版信息

Photosynth Res. 1996 Jan;47(1):51-9. doi: 10.1007/BF00017753.

Abstract

Photoinactivation of Photosystem (PS) II in vivo was investigated by cumulative exposure of pea, rice and spinach leaves to light pulses of variable duration from 2 to 100 s, separated by dark intervals of 30 min. During each light pulse, photosynthetic induction occurred to an extent depending on the time of illumination, but steady-state photosynthesis had not been achieved. During photosynthetic induction, it is clearly demonstrated that reciprocity of irradiance and duration of illumination did not hold: hence the same cumulative photon exposure (mol m(-2)) does not necessarily give the same extent of photoinactivation of PS II. This contrasts with the situation of steady-state photosynthesis where the photoinactivation of PS II exhibited reciprocity of irradiance and duration of illumination (Park et al. (1995) Planta 196: 401-411). We suggest that, for reciprocity to hold between irradiance and duration of illumination, there must be a balance between photochemical (qP) and non-photochemical (NPQ) quenching at all irradiances. The index of susceptibility to light stress, which represents an intrinsic ability of PS II to balance photochemical and non-photochemical quenching, is defined by the quotient (1-qP)/NPQ. Although constant in steady-state photosynthesis under a wide range of irradiance (Park et al. (1995). Plant Cell Physiol 36: 1163-1169), this index of susceptibility for spinach leaves declined extremely rapidly during photosynthetic induction at a given irradiance, and, at a given cumulative photon exposure, was dependent on irradiance. During photosynthetic induction, only limited photoprotective strategies are developed: while the transthylakoid pH gradient conferred some degree of photoprotection, neither D1 protein turnover nor the xanthophyll cycle was operative. Thus, PS II is more easily photoinactivated during photosynthetic induction, a phenomenon that may have relevance for understorey leaves experiencing infrequent, short sunflecks.

摘要

采用不同时间(2-100s)的光脉冲对豌豆、水稻和菠菜叶片进行累积照射,其间用 30min 的暗期隔开,从而研究了 PS II 在活体中的光灭活情况。在每个光脉冲期间,光合作用的诱导程度取决于光照时间,但尚未达到稳态光合作用。在光合作用诱导期间,很明显辐照度和光照时间的相互性并不成立:因此,相同的累积光子暴露量(mol m(-2))不一定会导致 PS II 光灭活的相同程度。这与稳态光合作用的情况形成对比,在稳态光合作用中,PS II 的光灭活表现出辐照度和光照时间的相互性(Park 等人,1995 年,Planta 196:401-411)。我们认为,为了使辐照度和光照时间之间保持相互性,在所有辐照度下,光化学(qP)和非光化学(NPQ)猝灭之间必须达到平衡。对光胁迫的敏感性指数代表 PS II 在光化学和非光化学猝灭之间达到平衡的固有能力,其定义为商(1-qP)/NPQ。尽管在宽辐照度范围内(Park 等人,1995 年,植物细胞生理学 36:1163-1169),稳态光合作用下该指数保持不变,但在给定辐照度下,该指数在光合作用诱导期间迅速下降,并且在给定的累积光子暴露量下,该指数取决于辐照度。在光合作用诱导期间,仅开发了有限的光保护策略:尽管跨类囊体 pH 梯度赋予了一定程度的光保护,但 D1 蛋白周转和叶黄素循环都不起作用。因此,PS II 在光合作用诱导期间更容易光灭活,这种现象可能与很少经历短暂阳光照射的林下叶片有关。

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