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首页> 外文期刊>The Plant Cell >Arabidopsis Mutants Deleted in the Light-Harvesting Protein Lhcb4 Have a Disrupted Photosystem II Macrostructure and Are Defective in Photoprotection
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Arabidopsis Mutants Deleted in the Light-Harvesting Protein Lhcb4 Have a Disrupted Photosystem II Macrostructure and Are Defective in Photoprotection

机译:在光收集蛋白Lhcb4中删除的拟南芥突变体具有破坏的光系统II宏观结构,并且在光保护方面有缺陷。

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摘要

The role of the light-harvesting complex Lhcb4 (CP29) in photosynthesis was investigated in Arabidopsis thaliana by characterizing knockout lines for each of the three Lhcb4 isoforms (Lhcb4.1/4.2/4.3). Plants lacking all isoforms (koLhcb4) showed a compensatory increase of Lhcb1 and a slightly reduced photosystem II/I ratio with respect to the wild type. The absence of Lhcb4 did not result in alteration in electron transport rates. However, the kinetic of state transition was faster in the mutant, and nonphotochemical quenching activity was lower in koLhcb4 plants with respect to either wild type or mutants retaining a single Lhcb4 isoform. KoLhcb4 plants were more sensitive to photoinhibition, while this effect was not observed in knockout lines for any other photosystem II antenna subunit. Ultrastructural analysis of thylakoid grana membranes showed a lower density of photosystem II complexes in koLhcb4. Moreover, analysis of isolated supercomplexes showed a different overall shape of the C2S2 particles due to a different binding mode of the S-trimer to the core complex. An empty space was observed within the photosystem II supercomplex at the Lhcb4 position, implying that the missing Lhcb4 was not replaced by other Lhc subunits. This suggests that Lhcb4 is unique among photosystem II antenna proteins and determinant for photosystem II macro-organization and photoprotection.
机译:通过表征三种Lhcb4同工型(Lhcb4.1 / 4.2 / 4.3)的敲除谱线,在拟南芥中研究了光采复合物Lhcb4(CP29)在光合作用中的作用。缺乏所有同工型(koLhcb4)的植物显示Lhcb1的补偿性增加和相对于野生型的光系统II / I比略有降低。没有Lhcb4不会导致电子传输速率的改变。然而,相对于野生型或保留单个Lhcb4同工型的突变体,突变体中状态转变的动力学更快,而koLhcb4植物的非光化学猝灭活性较低。 KoLhcb4植物对光抑制更敏感,而在其他任何光系统II天线亚基的敲除品系中均未观察到这种效应。类囊体颗粒膜的超微结构分析显示koLhcb4中光系统II复合物的密度较低。而且,由于S-三聚体与核心复合物的结合方式不同,对分离的超复合物的分析显示出C2S2颗粒的总体形状也不同。在Lhcb4位置的光系统II超复合物中观察到一个空白区域,这表明丢失的Lhcb4没有被其他Lhc亚基取代。这表明Lhcb4在光系统II天线蛋白中是唯一的,并且是光系统II宏观组织和光保护的决定因素。

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