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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >New insights into photosynthetic oscillations revealed by two-dimensional microscopic measurements of chlorophyll fluorescence kinetics in intact leaves and isolated protoplasts
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New insights into photosynthetic oscillations revealed by two-dimensional microscopic measurements of chlorophyll fluorescence kinetics in intact leaves and isolated protoplasts

机译:通过二维显微镜测量完整叶片和分离的原生质体中叶绿素荧光动力学,揭示了对光合作用振荡的新见解

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摘要

Chlorophyll fluorescence kinetic microscopy was used to analyze photosynthetic oscillations in individual cells of leaves and in isolated leaf cell protoplasts. Four Brassicaceae species were used: Arabidopsis halleri (L.) O'Kane & Al-Shehbaz, Thlaspi fendleri (Nels.) Hitchc, Thlaspi caerulescens J.&C. Presl and Thlaspi ochroleucum Boiss et Helder. With the latter two, the measurements were extended also to isolated protoplasts. The oscillations were induced under the microscope by exposing dark-adapted samples to actinic irradiance. Detailed analysis of the induced transients revealed that they consist of several processes oscillating with different frequencies and not only one component as reported earlier. Furthermore, it was found that most of these processes are controlled inside each individual cell. This was shown by differences in oscillations in neighboring cells and protoplasts that share a uniform intercellular environment. The frequency of the dominant oscillation frequency depended neither on irradiance nor on CO2 concentration and is, therefore, not controlled by the photosynthetic rate. Characteristic differences in the frequency spectrum and damping of oscillations have been found among the plant species examined. [References: 34]
机译:叶绿素荧光动力学显微镜用于分析叶片单个细胞和分离的叶片细胞原生质体中的光合作用振荡。使用了四种十字花科:拟南芥O'Kane&Al-Shehbaz,Thlaspi fendleri(内尔斯)Hitchc,Thlaspi caerulescens J.&C。 Presl和Thlaspi ochroleucum Boiss et Helder。对于后两者,测量也扩展到分离的原生质体。通过将暗适应的样品暴露在光化辐照下,在显微镜下引发振荡。对感应瞬变的详细分析表明,它们由以不同频率振荡的多个过程组成,而不仅仅是先前报道的一个分量。此外,发现大多数这些过程都在每个单独的单元内进行控制。共享相同细胞间环境的相邻细胞和原生质体振荡差异表明了这一点。主振荡频率不依赖于辐照度也不依赖于CO2浓度,因此不受光合速率的控制。在所检查的植物物种之间,已发现频谱和振荡衰减的特征差异。 [参考:34]

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