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光合膜中叶绿素吸收的新评价。

A new evaluation of chlorophyll absorption in photosynthetic membranes.

机构信息

Carnegic Institution of Washington, 94305, Stanford, CA, USA.

出版信息

Photosynth Res. 1983 Jan;4(1):375-83. doi: 10.1007/BF00041834.

Abstract

The three major chlorophyll-proteins of spinach chloroplasts were solubilized with digitonin and isolated by electrophoresis with deoxycholate. The gel bands were identified from their absorption and fluorescence spectra measured at 77 K. The slowest moving band was a Photosystem I complex (CPI); the second, a Photosystem II complex (Cpa); and the third, a chlorophyll a-b, antenna complex (LHCP). When absorption spectra (630-730 nm) of the bands were added in the proportions found in the gel, the sum closely matched the absorption of the chloroplasts both before and after solubilization. Thus these spectra represent the native absorption of the major antenna chlorophyll-proteins of green plants. Each of these spectra was resolved with a computer assisted, curve-fitting program into 8 mixed Gaussian-Lorentzian shaped components. The major, Chl a components in the 3 fractions were different both in peak positions and bandwidths. This result suggests that each chlorophyll-protein has its own unique set of chlorophyll a spectral forms or components.

摘要

菠菜叶绿体的三种主要叶绿素蛋白用胆酸钠溶解,然后用去氧胆酸钠电泳分离。从在 77 K 下测量的吸收和荧光光谱鉴定凝胶带。移动最慢的带是光系统 I 复合物(CPI);第二带是光系统 II 复合物(Cpa);第三带是叶绿素 a-b,天线复合物(LHCP)。当以凝胶中发现的比例添加带的吸收光谱(630-730nm)时,总和与溶解前后叶绿体的吸收非常吻合。因此,这些光谱代表了绿色植物主要天线叶绿素蛋白的天然吸收。使用计算机辅助的曲线拟合程序将每个光谱分解为 8 个混合高斯-洛伦兹形状的分量。3 个部分中的主要叶绿素 a 分量在峰位置和带宽方面都不同。这一结果表明,每种叶绿素蛋白都有其独特的一组叶绿素 a 光谱形式或分量。

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