Institute of Crystallography, National Research Council of Italy, Via Salaria Km 29,3 00015, Monterotondo Stazione, Rome, Italy.
Institute of Chemical Methodologies, National Research Council of Italy, Via Salaria km 29,3 00015, Monterotondo Stazione, Rome, Italy.
Sci Rep. 2018 Oct 3;8(1):14745. doi: 10.1038/s41598-018-33146-y.
Photosystem II (PSII) reaction centre D1 protein of oxygenic phototrophs is pivotal for sustaining photosynthesis. Also, it is targeted by herbicides and herbicide-resistant weeds harbour single amino acid substitutions in D1. Conservation of D1 primary structure is seminal in the photosynthetic performance in many diverse species. In this study, we analysed built-in and environmentally-induced (high temperature and high photon fluency - HT/HL) phenotypes of two D1 mutants of Chlamydomonas reinhardtii with Ala250Arg (A250R) and Ser264Lys (S264K) substitutions. Both mutations differentially affected efficiency of electron transport and oxygen production. In addition, targeted metabolomics revealed that the mutants undergo specific differences in primary and secondary metabolism, namely, amino acids, organic acids, pigments, NAD, xanthophylls and carotenes. Levels of lutein, β-carotene and zeaxanthin were in sync with their corresponding gene transcripts in response to HT/HL stress treatment in the parental (IL) and A250R strains. D1 structure analysis indicated that, among other effects, remodelling of H-bond network at the Q site might underpin the observed phenotypes. Thus, the D1 protein, in addition to being pivotal for efficient photosynthesis, may have a moonlighting role in rewiring of specific metabolic pathways, possibly involving retrograde signalling.
光合作用系统 II(PSII)反应中心 D1 蛋白是维持光合作用的关键。此外,它是除草剂的靶标,具有抗除草剂的杂草在 D1 中只有一个氨基酸取代。D1 一级结构的保守性对许多不同物种的光合作用性能至关重要。在这项研究中,我们分析了具有 Ala250Arg(A250R)和 Ser264Lys(S264K)取代的莱茵衣藻 Chlamydomonas reinhardtii 的两个 D1 突变体的内置和环境诱导(高温和高光强-HT/HL)表型。这两种突变都对电子传递和氧气产生的效率产生了不同的影响。此外,靶向代谢组学揭示了突变体在初级和次级代谢中经历了特定的差异,即氨基酸、有机酸、色素、NAD、叶黄素和类胡萝卜素。叶黄素、β-胡萝卜素和玉米黄质的水平与它们在亲本(IL)和 A250R 菌株中对 HT/HL 应激处理的相应基因转录物同步。D1 结构分析表明,除了其他影响外,Q 位点氢键网络的重塑可能是观察到的表型的基础。因此,D1 蛋白除了对高效光合作用至关重要外,还可能具有重布线特定代谢途径的兼职作用,可能涉及逆行信号转导。