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叶片中组织、细胞和叶绿体光合活性的高分辨率成像。

High resolution imaging of photosynthetic activities of tissues, cells and chloroplasts in leaves.

作者信息

Baker N R, Oxborough K, Lawson T, Morison J I

机构信息

Department of Biological Sciences, University of Essex, Colchester, Essex CO4 3SQ, UK.

出版信息

J Exp Bot. 2001 Apr;52(356):615-21.

Abstract

Through imaging of chlorophyll fluorescence, it is possible to produce parameterized fluorescence images that estimate the operating quantum efficiency of photosystem II (PSII) photochemistry and which can be used to reveal heterogeneous patterns of photosynthetic performance within leaves. The operating quantum efficiency of PSII photochemistry is dependent upon the effective absorption cross-section of the light-harvesting system of PSII and the photochemical capacity of PSII. The effective absorption cross-section is decreased by the process of down-regulation, which is widely thought to operate within the pigment matrices of PSII and which results in non-photochemical quenching of chlorophyll fluorescence. The photochemical capacity is non-linearly related to the proportion of PSII centres in the 'open' state and results in photochemical quenching of chlorophyll fluorescence. Examples of heterogeneity of the operating quantum efficiency of PSII photochemistry during the induction of photosynthesis in maize leaves and in the chloroplast populations of stomatal guard cells of a leaf of Tradescantia albifora are presented, together with analyses of the factors determining this heterogeneity. A comparison of the operating quantum efficiency of PSII photochemistry within guard cells and adjacent mesophyll cells of Commelina communis is also made, before and after stomatal closure through a change in ambient humidity.

摘要

通过叶绿素荧光成像,可以生成参数化的荧光图像,这些图像能够估算光系统II(PSII)光化学的运行量子效率,并且可用于揭示叶片内光合性能的异质性模式。PSII光化学的运行量子效率取决于PSII光捕获系统的有效吸收截面以及PSII的光化学能力。有效吸收截面会因下调过程而减小,人们普遍认为下调过程在PSII的色素基质内起作用,并导致叶绿素荧光的非光化学猝灭。光化学能力与处于“开放”状态的PSII中心比例呈非线性关系,并导致叶绿素荧光的光化学猝灭。文中给出了玉米叶片光合作用诱导过程中以及紫露草叶片气孔保卫细胞叶绿体群体中PSII光化学运行量子效率异质性的实例,以及对决定这种异质性的因素的分析。还比较了鸭跖草保卫细胞和相邻叶肉细胞在环境湿度变化导致气孔关闭前后PSII光化学的运行量子效率。

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