Laboratory for Molecular Photobioenergetics, Biological Research Centre, Institute of Plant Biology, Szeged, Hungary.
Doctoral School of Biology, University of Szeged, Szeged, Hungary.
Plant Cell Environ. 2023 Feb;46(2):422-439. doi: 10.1111/pce.14481. Epub 2022 Nov 17.
PSBO is essential for the assembly of the oxygen-evolving complex in plants and green algae. Despite its importance, we lack essential information on its lifetime and how it depends on the environmental conditions. We have generated nitrate-inducible PSBO amiRNA lines in the green alga Chlamydomonas reinhardtii. Transgenic strains grew normally under non-inducing conditions, and their photosynthetic performance was comparable to the control strain. Upon induction of the PSBO amiRNA constructs, cell division halted. In acetate-containing medium, cellular PSBO protein levels decreased by 60% within 24 h in the dark, by 75% in moderate light, and in high light, the protein completely degraded. Consequently, the photosynthetic apparatus became strongly damaged, probably due to 'donor-side-induced photoinhibition', and cellular ultrastructure was also severely affected. However, in the absence of acetate during induction, PSBO was remarkably stable at all light intensities and less substantial changes occurred in photosynthesis. Our results demonstrate that the lifetime of PSBO strongly depends on the light intensity and carbon availability, and thus, on the metabolic status of the cells. We also confirm that PSBO is required for photosystem II stability in C. reinhardtii and demonstrate that its specific loss also entails substantial changes in cell morphology and cell cycle.
PSBO 对于植物和绿藻中氧气释放复合物的组装是必不可少的。尽管它很重要,但我们缺乏关于其寿命以及它如何依赖于环境条件的基本信息。我们在绿藻莱茵衣藻中生成了硝酸盐诱导的 PSBO amiRNA 系。转基因株系在非诱导条件下正常生长,其光合作用性能与对照株系相当。诱导 PSBO amiRNA 构建物后,细胞分裂停止。在含有醋酸盐的培养基中,在黑暗中,细胞内 PSBO 蛋白水平在 24 小时内下降了 60%,在中等光照下下降了 75%,在高光下,蛋白质完全降解。因此,光合作用装置受到强烈破坏,可能是由于“供体侧诱导的光抑制”,细胞超微结构也受到严重影响。然而,在诱导过程中没有醋酸盐时,PSBO 在所有光照强度下都非常稳定,光合作用的变化较小。我们的结果表明,PSBO 的寿命强烈依赖于光照强度和碳可用性,因此,依赖于细胞的代谢状态。我们还证实 PSBO 是莱茵衣藻中 PSII 稳定性所必需的,并表明其特异性缺失也会导致细胞形态和细胞周期的重大变化。