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红藻的荧光光谱以及能量从藻红蛋白到藻蓝蛋白和叶绿素的转移。

The fluorescence spectra of red algae and the transfer of energy from phycoerythrin to phycocyanin and chlorophyll.

作者信息

FRENCH C S, YOUNG V K

出版信息

J Gen Physiol. 1952 Jul;35(6):873-90. doi: 10.1085/jgp.35.6.873.

Abstract
  1. The fluorescence spectra of the alga Porphyridium have been recorded as energy distribution curves for eleven different incident wave lengths of monochromatic incident light between wave lengths 405 and 546 mmicro. 2. In these spectra chlorophyll fluorescence predominates when the incident light is in the blue part of the spectrum which is strongly absorbed by chlorophyll. 3. For blue-green and green light the spectrum excited in Porphyridium contains in addition to chlorophyll fluorescence, the fluorescence bands characteristic of phycoerythrin and of phycocyanin. 4. From these spectra the approximate curves for the fluorescence of the individual pigments phycoerythrin, phycocyanin, and chlorophyll in the living material have been derived and the relative intensity of each of them has been obtained for each of the eleven incident wave lengths. 5. The effectiveness spectrum for the excitation of the fluorescence of these three pigments in vivo has been plotted. 6. From comparisons of the effectiveness spectrum for the excitation of each of these pigments it appears that both phycocyanin and chlorophyll receive energy from light which is absorbed by phycoerythrin. 7. It is suggested that phycocyanin may be an intermediate in the resonance transfer of energy from phycoerythrin to chlorophyll. 8. Since phycoerythrin and phycocyanin transfer energy to chlorophyll, it appears probable that chlorophyll plays a specific chemical role in photosynthesis in addition to acting as a light absorber.
摘要
  1. 已记录了紫球藻的荧光光谱,作为波长在405至546毫微米之间的11种不同单色入射光波长的能量分布曲线。2. 在这些光谱中,当入射光处于被叶绿素强烈吸收的光谱的蓝色部分时,叶绿素荧光占主导。3. 对于蓝绿光,紫球藻中激发的光谱除了叶绿素荧光外,还包含藻红蛋白和藻蓝蛋白特有的荧光带。4. 从这些光谱中得出了活体材料中藻红蛋白、藻蓝蛋白和叶绿素各自荧光的近似曲线,并获得了11种入射波长下每种荧光的相对强度。5. 绘制了这三种色素在体内激发荧光的效能光谱。6. 通过比较这三种色素各自激发荧光的效能光谱,发现藻蓝蛋白和叶绿素都从被藻红蛋白吸收的光中获取能量。7. 有人提出藻蓝蛋白可能是能量从藻红蛋白共振转移到叶绿素过程中的中间体。8. 由于藻红蛋白和藻蓝蛋白将能量转移给叶绿素,除了作为光吸收体外,叶绿素在光合作用中似乎还起着特定的化学作用。

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