Botany Department, University of California, Berkeley, California 94720.
Plant Physiol. 1969 Apr;44(4):540-3. doi: 10.1104/pp.44.4.540.
Action spectra were obtained for photosystems I and II in chemically fixed algal cells and for photosystem I in unfixed lysozyme treated cells. Untreated algal cells yielded neither of the 2 light reactions with the reaction mixtures used. The action spectra for photosystem I in the blue-green alga Anacystis nidulans and red alga Porphyridium cruentum follow the absorption spectrum of chlorophyll a with a small peak in the region of the accessory pigments. In the green alga Chlorella pyrenoidosa the photosystem I action spectrum follows the absorption spectrum of chlorophyll a. Photosystem II action spectra in A. nidulans and P. cruentum follow the absorption spectra of the accessory pigments while that in C. pyrenoidosa is shifted slightly toward the blue spectral region. These results provide additional evidence that formaldehyde fixed cells are valid models for studying the light reactions of photosynthesis.
我们测定了化学固定的藻类细胞的光系统 I 和 II 以及未经固定的溶菌酶处理的细胞的光系统 I 的作用光谱。用我们所用的反应混合物,未经处理的藻类细胞既不进行这两个光反应中的任何一个。蓝绿藻鱼腥藻和红藻血紫质的光系统 I 的作用光谱与叶绿素 a 的吸收光谱相似,在辅助色素区域有一个小峰。在绿藻椭圆小球藻中,光系统 I 的作用光谱与叶绿素 a 的吸收光谱相似。鱼腥藻和血紫质中的光系统 II 作用光谱与辅助色素的吸收光谱相似,而椭圆小球藻中的光系统 II 作用光谱则稍微向蓝色光谱区域移动。这些结果进一步证明甲醛固定的细胞是研究光合作用光反应的有效模型。