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Enhanced Photoprotection by Protein-Bound vs Free Xanthophyll Pools: A Comparative Analysis of Chlorophyll b and Xanthophyll Biosynthesis Mutants

机译:结合蛋白和自由叶黄素池增强的光保护作用:叶绿素b和叶黄素生物合成突变体的比较分析

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摘要

When light absorbed by plants exceeds the capacity of photosynthesis, the xanthophyll violaxanthin is re-versibly de-epoxidized to zeaxanthin in the so-called xanthophyll cycle. Zeaxanthin plays a key role in the protection of photosynthetic organisms against excess light, by promoting rapidly reversible (qE) and long-term (ql) quenching of excited chlorophylls, and preventing lipid oxidation. The photoprotective role of zeaxanthin, either free or bound to light-harvesting complexes (Lhcs), has been investigated by using mutants lacking Ch1 b (ch1) and/or specific xanthophyll species (npq, Iut2). The ch1 mutation causes (1) the absence of Lhcb proteins; (2) strong reduction of the feedback de-excitation (qE); and (3) accumulation of xanthophylls as free pigments into thylakoids. Ch1 mutants showed extreme sensitivity to photo-oxidative stress in high light, due to higher singlet oxygen (O~1_2) release. The double mutant ch1npq1 was more sensitive to photo-oxidation than ch1, showing that zeaxanthin does protect lipids even when free in the membrane. Nevertheless, lack of zeaxanthin had a much stronger impact on the level of lipid peroxidation in Lhcs-containing plants (WTvs npq1) with respect to Lhc-less plants (ch1 vs ch1npq1), implying that its protective effect is enhanced by interaction with antenna proteins. It is proposed that the antioxidant capacity of zeaxanthin is empowered in the presence of PSII-LHCs-Zea complexes, while its effect on enhancement of qE only provides a minor contribution. Comparison of the sensitivity of WT vs npq1 plants to exogenous O~1_2 suggests that besides the scavenging of O~1_2, at least one additional mechanism is involved in chloroplast photoprotection.
机译:当植物吸收的光超过光合作用的能力时,叶黄素紫黄质在所谓的叶黄素循环中可逆地脱环氧化为玉米黄质。玉米黄质通过促进激发叶绿素的快速可逆(qE)和长期(ql)猝灭并防止脂质氧化,在保护光合生物免受过量光照中起关键作用。通过使用缺乏Ch1b(ch1)和/或特定叶黄素种类(npq,Iut2)的突变体,研究了玉米黄质的光保护作用,无论是游离的还是与采光复合物(Lhcs)结合的。 ch1突变导致(1)Lhcb蛋白的缺失; (2)大大减少反馈去激励(qE); (3)叶黄素作为游离色素积累到类囊体中。由于较高的单线态氧(O〜1_2)释放,Ch1突变体对强光下的光氧化应激表现出极大的敏感性。双突变体ch1npq1比ch1对光氧化反应更敏感,表明玉米黄质即使在膜中自由时也能保护脂质。然而,相对于无Lhc植物(ch1 vs ch1npq1),缺乏玉米黄质对含Lhcs植物(WTvs npq1)中脂质过氧化水平的影响要大得多,这表明与天线蛋白的相互作用增强了其保护作用。 。有人提出,在存在PSII-LHCs-Zea复合物的情况下,玉米黄质的抗氧化能力得到了增强,而其对增强qE的作用仅贡献很小。 WT和npq1植物对外源O〜1_2敏感性的比较表明,除清除O〜1_2外,叶绿体的光保护还涉及至少一种其他机制。

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  • 来源
    《Molecular Plant》 |2010年第3期|p.576-593|共18页
  • 作者单位

    Dipartimento di Biotecnologie, University di Verona, Strada Le Grazie 15, 37134, Verona, Italy;

    Dipartimento di Biotecnologie, University di Verona, Strada Le Grazie 15, 37134, Verona, Italy;

    CEA, IBEB, SBVME, Laboratoire d'Ecophysiologie Moleculaire des Plantes, 13108 Saint-Paul-lez-Durance, France,CNRS, UMR Blologie Vegetale et Mkrobiologle Environnementales, 13108 Saint-Paul-lez-Durance, France,Universite Aix-Marseille, 13108 Saint-Paul-lez-Durance, France;

    Dipartimento di Biotecnologie, University di Verona, Strada Le Grazie 15, 37134, Verona, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    zeaxanthin; singlet oxygen; photoprotection; chloroplast; light-harvesting complexes;

    机译:玉米黄质单线态氧光保护;叶绿体采光复合体;

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