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培养集胞藻以获得不同色素比例时激发能的转移

Transfer of the excitation energy in Anacystis nidulans grown to obtain different pigment ratios.

作者信息

Ghosh A K

出版信息

Biophys J. 1966 Sep;6(5):611-9. doi: 10.1016/S0006-3495(66)86681-X.

Abstract

The blue-green alga, Anacystis nidulans, was grown in lights of different colors and intensities, and its absorption and fluorescence properties were studied. Strong orange light, absorbed mainly by phycocyanin, causes reduction in the ratio of phycocyanin to chlorophyll a; strong red light, absorbed mainly by chlorophyll, causes an increase in this ratio. This confirms the earlier findings of Brody and Emerson (12) on Porphyridum, and of Jones and Myers (8) on Anacystis. Anacystis cultures grown in light of low intensity show, upon excitation of phycocyanin, emission peaks at 600 mmu and 680 mmu, due to the fluorescence of phycocyanin and chlorophyll a, respectively. Changes in the efficiency of energy transfer from phycocyanin to chlorophyll a are revealed by changes in the ratios of these two bands. A decrease in efficiency of energy transfer from phycocyanin to chlorophyll a seems to occur whenever the ratio of chlorophyll a to phycocyanin deviates from the normal. Algae grown in light of high intensity show, upon excitation of phycocyanin, only a fluorescence band at 660 mmu and no band at 680 mmu. This suggests reduced efficiency of energy transfer from phycocyanin to the strongly fluorescent form of chlorophyll a (chlorophyll a(2)) and perhaps increased transfer to the weakly fluorescent form of chlorophyll a (chlorophyll a(1)).

摘要

将蓝绿藻集胞藻培养在不同颜色和强度的光照下,并研究其吸收和荧光特性。主要被藻蓝蛋白吸收的强橙色光会导致藻蓝蛋白与叶绿素a的比例降低;主要被叶绿素吸收的强红光会使该比例增加。这证实了布罗迪和埃默森(12)对紫球藻以及琼斯和迈尔斯(8)对集胞藻的早期研究结果。在低强度光照下培养的集胞藻培养物,在藻蓝蛋白受激发时,分别由于藻蓝蛋白和叶绿素a的荧光,在600毫微米和680毫微米处出现发射峰。这两个波段比例的变化揭示了从藻蓝蛋白到叶绿素a的能量转移效率的变化。每当叶绿素a与藻蓝蛋白的比例偏离正常时,从藻蓝蛋白到叶绿素a的能量转移效率似乎都会降低。在高强度光照下培养的藻类,在藻蓝蛋白受激发时,仅在660毫微米处出现一个荧光带,而在680毫微米处没有荧光带。这表明从藻蓝蛋白到强荧光形式的叶绿素a(叶绿素a(2))的能量转移效率降低,并且可能增加了向弱荧光形式的叶绿素a(叶绿素a(1))的转移。

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