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完整叶片中气孔保卫细胞和叶肉细胞光合电子传递对光、二氧化碳和湿度的响应。

Responses of photosynthetic electron transport in stomatal guard cells and mesophyll cells in intact leaves to light, CO2, and humidity.

作者信息

Lawson Tracy, Oxborough Kevin, Morison James I L, Baker Neil R

机构信息

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

出版信息

Plant Physiol. 2002 Jan;128(1):52-62.

Abstract

High-resolution images of the chlorophyll fluorescence parameter Fq'/Fm' from attached leaves of commelina (Commelina communis) and tradescantia (Tradescantia albiflora) were used to compare the responses of photosynthetic electron transport in stomatal guard cell chloroplasts and underlying mesophyll cells to key environmental variables. Fq'/Fm' estimates the quantum efficiency of photosystem II photochemistry and provides a relative measure of the quantum efficiency of non-cyclic photosynthetic electron transport. Over a range of light intensities, values of Fq'/Fm' were 20% to 30% lower in guard cell chloroplasts than in mesophyll cells, and there was a close linear relationship between the values for the two cell types. The responses of Fq'/Fm' of guard and mesophyll cells to changes of CO2 and O2 concentration were very similar. There were similar reductions of Fq'/Fm' of guard and mesophyll cells over a wide range of CO2 concentrations when the ambient oxygen concentration was decreased from 21% to 2%, suggesting that both cell types have similar proportions of photosynthetic electron transport used by Rubisco activity. When stomata closed after a pulse of dry air, Fq'/Fm' of both guard cell and mesophyll showed the same response; with a marked decline when ambient CO2 was low, but no change when ambient CO2 was high. This indicates that photosynthetic electron transport in guard cell chloroplasts responds to internal, not ambient, CO2 concentration.

摘要

利用鸭跖草(Commelina communis)和紫露草(Tradescantia albiflora)附着叶片叶绿素荧光参数Fq'/Fm'的高分辨率图像,比较气孔保卫细胞叶绿体和下层叶肉细胞中光合电子传递对关键环境变量的响应。Fq'/Fm'估计光系统II光化学的量子效率,并提供非循环光合电子传递量子效率的相对测量值。在一系列光强范围内,保卫细胞叶绿体中的Fq'/Fm'值比叶肉细胞中的低20%至30%,并且两种细胞类型的值之间存在密切的线性关系。保卫细胞和叶肉细胞的Fq'/Fm'对CO2和O2浓度变化的响应非常相似。当环境氧气浓度从21%降至2%时,在广泛的CO2浓度范围内,保卫细胞和叶肉细胞的Fq'/Fm'都有类似的降低,这表明两种细胞类型中由Rubisco活性使用的光合电子传递比例相似。当一阵干燥空气脉冲后气孔关闭时,保卫细胞和叶肉细胞的Fq'/Fm'表现出相同的响应;当环境CO2浓度低时显著下降,但当环境CO2浓度高时没有变化。这表明保卫细胞叶绿体中的光合电子传递对内部CO2浓度而非环境CO2浓度作出响应。

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