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状态1下叶片中光系统II和I的作用光谱以及光合作用的量子产率。

Action spectra of photosystems II and I and quantum yield of photosynthesis in leaves in State 1.

作者信息

Laisk Agu, Oja Vello, Eichelmann Hillar, Dall'Osto Luca

机构信息

Tartu Ülikooli Molekulaar- ja Rakubioloogia Instituut, Riia tn. 23, Tartu 51010, Estonia.

Tartu Ülikooli Molekulaar- ja Rakubioloogia Instituut, Riia tn. 23, Tartu 51010, Estonia.

出版信息

Biochim Biophys Acta. 2014 Feb;1837(2):315-25. doi: 10.1016/j.bbabio.2013.12.001. Epub 2013 Dec 12.

Abstract

The spectral global quantum yield (YII, electrons/photons absorbed) of photosystem II (PSII) was measured in sunflower leaves in State 1 using monochromatic light. The global quantum yield of PSI (YI) was measured using low-intensity monochromatic light flashes and the associated transmittance change at 810nm. The 810-nm signal change was calibrated based on the number of electrons generated by PSII during the flash (4·O2 evolution) which arrived at the PSI donor side after a delay of 2ms. The intrinsic quantum yield of PSI (yI, electrons per photon absorbed by PSI) was measured at 712nm, where photon absorption by PSII was small. The results were used to resolve the individual spectra of the excitation partitioning coefficients between PSI (aI) and PSII (aII) in leaves. For comparison, pigment-protein complexes for PSII and PSI were isolated, separated by sucrose density ultracentrifugation, and their optical density was measured. A good correlation was obtained for the spectral excitation partitioning coefficients measured by these different methods. The intrinsic yield of PSI was high (yI=0.88), but it absorbed only about 1/3 of quanta; consequently, about 2/3 of quanta were absorbed by PSII, but processed with the low intrinsic yield yII=0.63. In PSII, the quantum yield of charge separation was 0.89 as detected by variable fluorescence Fv/Fm, but 29% of separated charges recombined (Laisk A, Eichelmann H and Oja V, Photosynth. Res. 113, 145-155). At wavelengths less than 580nm about 30% of excitation is absorbed by pigments poorly connected to either photosystem, most likely carotenoids bound in pigment-protein complexes.

摘要

利用单色光在状态1下测量了向日葵叶片中光系统II(PSII)的光谱全局量子产率(YII,吸收的电子数/光子数)。利用低强度单色光闪光以及810nm处相关的透光率变化测量了PSI的全局量子产率(YI)。基于闪光期间PSII产生的电子数(4·O2释放)对810nm信号变化进行校准,这些电子在延迟2ms后到达PSI供体侧。在712nm处测量PSI的本征量子产率(yI,PSI吸收的每个光子的电子数),此处PSII的光子吸收较少。结果用于解析叶片中PSI(aI)和PSII(aII)之间激发分配系数的个体光谱。为作比较,分离出PSII和PSI的色素 - 蛋白质复合物,通过蔗糖密度超速离心进行分离,并测量其光密度。通过这些不同方法测量的光谱激发分配系数之间获得了良好的相关性。PSI的本征产率较高(yI = 0.88),但它仅吸收约1/3的量子;因此,约2/3的量子被PSII吸收,但以较低的本征产率yII = 0.63进行处理。在PSII中,通过可变荧光Fv/Fm检测到电荷分离的量子产率为0.89,但29%的分离电荷发生了复合(莱伊斯克A、艾歇尔曼H和奥亚V,《光合作用研究》113,145 - 155)。在波长小于580nm时,约30%的激发被与任一光系统连接不佳的色素吸收,很可能是色素 - 蛋白质复合物中结合的类胡萝卜素。

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