首页> 外文期刊>Journal of Plant Physiology >Leaf factors affecting the relationship between chlorophyll fluorescence and the rate of photosynthetic electron transport as determined from CO2 uptake
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Leaf factors affecting the relationship between chlorophyll fluorescence and the rate of photosynthetic electron transport as determined from CO2 uptake

机译:影响CO2吸收确定叶绿素荧光与光合电子传输速率之间关系的叶片因子

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摘要

CO2 uptake and chlorophyll fluorescence were measured under non-photorespiratory conditions in leaves from 14 plant species. The rate Of CO2-dependent electron transport JCO(2)) was calculated as four times rate of gross photosynthesis. The quantum yield of electron transport in photosystem 11 was estimated from the ratio DeltaF/Fm', where DeltaF is the difference between steady-state and maximal fluorescence in the light. As photon flux density (PFD) increased, JCO(2) increased linearly first, and then reached saturation. The product (DeltaF/Fm')PFD, which is a function of electron transport rate, showed a similar response. Therefore, the relationship between (AF/Fm')PFD versus JCO(2) was proportional. However, under high light, a linear correlation was not always maintained. Factors affecting the linear correlation were analyzed by measuring CO2 uptake and chlorophyll fluorescence under illumination from either the upper (adaxial) or lower (abaxial) leaf surface, and by using plants with anatomically symmetric leaves having palisade tissues on both sides. Consequently, it was shown that the parameter AF/Fm' is based on chlorophyll fluorescence emitted from chloroplasts present near the illuminated surface. Further, it was suggested that this restriction of the origin of fluorescence actually measured is significant in a leaf with high chlorophyll content, resulting in the deviation from linearity in the relationship between JCO(2) and (DeltaF/Fm')PFD.
机译:在非光呼吸条件下测量了14种植物叶片的CO2吸收和叶绿素荧光。 CO 2依赖电子传输的速率JCO(2))计算为总光合作用速率的四倍。根据比率DeltaF / Fm'估算光系统11中电子传输的量子产率,其中DeltaF是光的稳态和最大荧光之间的差。随着光子通量密度(PFD)的增加,JCO(2)首先线性增加,然后达到饱和。作为电子传输速率的函数的乘积(DeltaF / Fm')PFD显示出相似的响应。因此,(AF / Fm')PFD与JCO(2)之间的关系是成比例的。然而,在强光下,并不总是保持线性相关。通过测量在上(近轴)或下(近轴)叶表面光照下的CO 2吸收和叶绿素荧光,并通过使用解剖学上对称的叶子在两侧都具有栅栏组织的植物来分析影响线性相关的因素。因此,表明参数AF / Fm′基于存在于被照射表面附近的叶绿体发出的叶绿素荧光。此外,有人提出,对实际测得的荧光起源的这种限制在叶绿素含量高的叶片中是显着的,导致JCO(2)与(DeltaF / Fm')PFD之间关系的线性偏离。

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