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Minor Antenna Proteins CP24 and CP26 Affect the Interactions between Photosystem II Subunits and the Electron Transport Rate in Grana Membranes of Arabidopsis

机译:次要天线蛋白CP24和CP26影响拟南芥Grana膜中光系统II亚基和电子传输速率之间的相互作用。

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摘要

We investigated the function of chlorophyll a/b binding antenna proteins Chlorophyll Protein 26 (CP26) and CP24 in light harvesting and regulation of photosynthesis by isolating Arabidopsis thaliana knockout lines that completely lacked one or both of these proteins. All three mutant lines had a decreased efficiency of energy transfer from trimeric light-harvesting complex II (LHCII) to the reaction center of photosystem II (PSII) due to the physical disconnection of LHCII from PSII and formation of PSII reaction center depleted domains in grana partitions. Photosynthesis was affected in plants lacking CP24 but not in plants lacking CP26: the former mutant had decreased electron transport rates, a lower ΔpH gradient across the grana membranes, reduced capacity for nonphotochemical quenching, and limited growth. Furthermore, the PSII particles of these plants were organized in unusual two-dimensional arrays in the grana membranes. Surprisingly, overall electron transport, nonphotochemical quenching, and growth of the double mutant were restored to wild type. Fluorescence induction kinetics and electron transport measurements at selected steps of the photosynthetic chain suggested that limitation in electron transport was due to restricted electron transport between QA and QB, which retards plastoquinone diffusion. We conclude that CP24 absence alters PSII organization and consequently limits plastoquinone diffusion.
机译:我们调查了叶绿素a / b结合天线蛋白叶绿素蛋白26(CP26)和CP24在光捕获和光合作用调节中的功能,方法是分离完全缺少这些蛋白之一或两者的拟南芥敲除系。由于LHCII与PSII的物理分离以及在谷物中PSII反应中心耗尽结构域的形成,所有三个突变体系都从三聚体光捕获复合体II(LHCII)到光系统II(PSII)的反应中心的能量转移效率降低分区。光合作用在缺乏CP24的植物中受到影响,但在缺乏CP26的植物中没有受到影响:前者突变体具有降低的电子传输速率,较低的横跨整个膜的ΔpH梯度,降低的非光化学猝灭能力和有限的生长。此外,这些植物的PSII颗粒以不同寻常的二维阵列形式组织在格拉纳膜中。出乎意料的是,整体电子传输,非光化学淬灭和双重突变体的生长恢复为野生型。在光合作用链的选定步骤进行的荧光诱导动力学和电子传输测量表明,电子传输的限制是由于QA和QB之间电子传输受限制,从而阻碍了质体醌的扩散。我们得出结论,CP24的缺失会改变PSII的组织,从而限制质体醌的扩散。

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