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三种叶绿素 b 含量不同的光捕获复合物在 Mantoniella squamata(绿藻门)、Chlorella fusca(绿藻门)和 Sinapis alba(十字花科)中的能量传递和色素组成。

Energy transfer and pigment composition in three chlorophyll b-containing light-harvesting complexes isolated from Mantoniella squamata (Prasinophyceae), Chlorella fusca (Chlorophyceae) and Sinapis alba.

机构信息

Institut für Allgemeine Botanik, Johannes Gutenberg-University of Mainz, Saarstrasse 21, D-6500, Mainz, FRG.

出版信息

Photosynth Res. 1987 Jan;13(2):101-11. doi: 10.1007/BF00035234.

Abstract

Light-harvesting Chl a/b protein complexes were isolated from the higher plant Sinapis alba, the green alga Chlorella fusca, and the prasinophycean alga Mantoniella squamata by mild gel electrophoresis. The energy transfer from chlorophyll b and the accessory xanthophyll was measured by means of fluoresence spectroscopy at 77 K. The pigment composition of the isolated antenna complexes was determined by high performance liquid chromatography in order to calculate the number of light absorbing molecules per chlorophyll a in the different light-harvesting complexes. These results were complemented by the quantitation of the pigments in total thylakoids as well as in the different electrophoretic fractions. On the basis of these data the in vivo ratios of xanthophylls per chlorophyll a could be estimated. The results show that the light-harvesting complexes from Chlorella and from Sinapis exhibit identical ratios of total xanthophylls per chlorophyll a. By contrast, in the prasinophycean alga Mantoniella, the light-harvesting complex markedly differs from the other chlorophyll b containing proteins. It contains, in addition to neoxanthin and violaxanthin, high amounts of prasinoxanthin and its epoxide, which contribute significantly to light absorption. The concentration of chlorophyll b in the complex is very much higher in the antenna of Mantoniella than in those of Chlorella and Sinapis. Furthermore, it must be emphasized that in addition to chlorophyll b, a third chlorophyll species acts in the energy transfer to chlorophyll a. This chlorophyll c-like pigment is found to be present in a concentration which improves very efficiently the absorption in blue light. In light of these results it can be concluded that the absorption cross section in Mantoniella is higher not only because of an enhanced number of light-harvesting particles in the membrane, but also because of a higher ratio of accessory pigments to chlorophyll a.

摘要

通过温和的凝胶电泳,从高等植物白芥菜、绿藻衣藻和原绿球藻中分离出捕光叶绿素 a/b 蛋白复合物。通过荧光光谱法在 77 K 下测量了叶绿素 b 和辅助类胡萝卜素的能量转移。通过高效液相色谱法测定分离天线复合物的色素组成,以计算不同光捕获复合物中每个叶绿素 a 的吸光分子数。这些结果通过定量分析总类囊体以及不同电泳馏分中的色素得到补充。基于这些数据,可以估算体内叶黄素与叶绿素 a 的比值。结果表明,衣藻和白芥菜的光捕获复合物表现出相同的总类胡萝卜素与叶绿素 a 的比值。相比之下,在原绿球藻 Mantoniella 中,光捕获复合物与其他含叶绿素 b 的蛋白质明显不同。它除了含有新黄质和玉米黄质外,还含有大量的原叶黄素及其环氧化物,这对光吸收有很大贡献。在 Mantoniella 的天线中,叶绿素 b 的浓度比衣藻和白芥菜中的都要高得多。此外,必须强调的是,除了叶绿素 b 之外,第三种叶绿素在向叶绿素 a 传递能量中起作用。发现这种类似于叶绿素 c 的色素存在于一个浓度中,它可以有效地提高蓝光吸收。鉴于这些结果,可以得出结论,Mantoniella 的吸收截面不仅因为膜中增加了更多的光捕获颗粒,而且还因为辅助色素与叶绿素 a 的比例更高。

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