Hutin Claire, Nussaume Laurent, Moise Nicolae, Moya Ismaël, Kloppstech Klaus, Havaux Michel
Département d'Ecophysiologie Végétale et de Microbiologie, Laboratoire de Biologie du Développement des Plantes, UMR 163, CNRS, Université Méditerranée-Commissariat à l'Energie Atomique 1000, Saint-Paul-lez-Durance, France.
Proc Natl Acad Sci U S A. 2003 Apr 15;100(8):4921-6. doi: 10.1073/pnas.0736939100. Epub 2003 Apr 3.
The early light-induced proteins (ELIPs) belong to the multigenic family of light-harvesting complexes, which bind chlorophyll and absorb solar energy in green plants. ELIPs accumulate transiently in plants exposed to high light intensities. By using an Arabidopsis thaliana mutant (chaos) affected in the posttranslational targeting of light-harvesting complex-type proteins to the thylakoids, we succeeded in suppressing the rapid accumulation of ELIPs during high-light stress, resulting in leaf bleaching and extensive photooxidative damage. Constitutive expression of ELIP genes in chaos before light stress resulted in ELIP accumulation and restored the phototolerance of the plants to the wild-type level. Free chlorophyll, a generator of singlet oxygen in the light, was detected by chlorophyll fluorescence lifetime measurements in chaos leaves before the symptoms of oxidative stress appeared. Our findings indicate that ELIPs fulfill a photoprotective function that could involve either the binding of chlorophylls released during turnover of pigment-binding proteins or the stabilization of the proper assembly of those proteins during high-light stress.
早期光诱导蛋白(ELIPs)属于捕光复合体的多基因家族,该家族在绿色植物中结合叶绿素并吸收太阳能。ELIPs在暴露于高光强度的植物中短暂积累。通过使用拟南芥突变体(chaos),该突变体在捕光复合体类型蛋白向类囊体的翻译后靶向过程中受到影响,我们成功抑制了高光胁迫期间ELIPs的快速积累,从而导致叶片漂白和广泛的光氧化损伤。在光胁迫之前,ELIP基因在chaos中的组成型表达导致ELIP积累,并将植物的光耐受性恢复到野生型水平。在氧化应激症状出现之前,通过叶绿素荧光寿命测量在chaos叶片中检测到游离叶绿素,它是光中单线态氧的产生者。我们的研究结果表明,ELIPs发挥光保护功能,这可能涉及色素结合蛋白周转过程中释放的叶绿素的结合,或在高光胁迫期间这些蛋白正确组装的稳定。