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四型体由 CP1 和 CP 2 缺失型衣藻突变体杂交产生的色素蛋白复合物及其功能特性。

Pigment protein complexes and functional properties of tetratype resulting from crosses between CP1 and CP 2 less Chlamydomonas mutants.

机构信息

Laboratoire de Photosynthèse, CNRS, BP 1, F 91190, Gif-sur-Yvette, (France).

出版信息

Photosynth Res. 1986 Jan;7(3):221-36. doi: 10.1007/BF00014676.

Abstract

A chlorophyll b-less mutant of Chlamydomonas reinhardtii (Pg 27) was isolated after UV irradiation of the wild type cells. This photosynthetically competent mutant totally lacks chlorophyll b and the CP2 chlorophyll-protein complex. However, SDS-PAGE, proteolytic digestions and immunodetections demonstrated that the 24-25 Kd apoproteins of the lacking CP2 complex are still present in thylakoids of the Pg27 mutant. It is concluded that this CP2-less mutant is affected in the biosynthesis pathway of chlorophyll b.This CP2-less mutant was crossed with a CP1-less mutant (Fl5) Fluorescence emission spectra and fluorescence inductions in the presence of DCMU were analysed in the resulting (cp 2 (-) , cp 1 (+) ), (cp 2 (+) , cp 1 (-) ), (cp 2 (+) , cp 1 (+) ), cp 2 (-) , cp 1 (-) )tetratype. Differences in PS 2 optical cross section and in the relative amplitude or localisation of fluorescence emission peaks fit well with a quadripartite model where PS1 and PS2 would each correspond to a reaction centre core complex (CP1 and CP2 respectively) associated to a light harvesting antenna (LHC1 and LHC2 respectively). The occurrence of energy transfers from PS1 peripheral antenna to PS2 in the Fl 5 mutant shows that, in absence of CP1, at least a part of its associated PS1 light harvesting antenna migrates in the PS2 containing appressed thylakoids.

摘要

经紫外线照射野生型小球藻(Chlamydomonas reinhardtii)后,分离出一种叶绿素 b 缺失突变体(Pg27)。这种具有光合作用能力的突变体完全缺乏叶绿素 b 和 CP2 叶绿素蛋白复合物。然而,SDS-PAGE、蛋白水解消化和免疫检测表明,缺失 CP2 复合物的 24-25 Kd 脱辅基蛋白仍存在于 Pg27 突变体的类囊体中。因此,我们得出结论,这种 CP2 缺失突变体在叶绿素 b 的生物合成途径中受到影响。

将这种 CP2 缺失突变体与 CP1 缺失突变体(Fl5)进行杂交。在 DCMU 存在的情况下,分析了所得(cp2(-),cp1(+))、(cp2(+),cp1(-))、(cp2(+),cp1(+))、cp2(-)、cp1(-))四重组体的 PS2 荧光发射光谱和荧光诱导。PS2 光学截面的差异以及荧光发射峰的相对幅度或定位与一个四分体模型非常吻合,该模型中 PS1 和 PS2 分别对应于一个反应中心核心复合物(CP1 和 CP2),分别与一个光捕获天线(LHC1 和 LHC2)相关。在 Fl5 突变体中从 PS1 外周天线到 PS2 的能量转移的发生表明,在缺乏 CP1 的情况下,其至少一部分相关的 PS1 光捕获天线迁移到含有 PS2 的紧密堆积的类囊体中。

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