Department of Plant and Environmental Sciences, Weizmann Institute of Science, Rehovot, 76100, Israel.
Newe Ya'ar Research Center, Agricultural Research Organization, Ramat Yishay, 30095, Israel.
Plant J. 2020 Jul;103(2):715-725. doi: 10.1111/tpj.14764. Epub 2020 Apr 28.
PGR5-LIKE PHOTOSYNTHETIC PHENOTYPE1 (PGRL1) regulates photosystem I cyclic electron flow which transiently activates non-photochemical quenching at the onset of light. Here, we show that a disulfide-based mechanism of PGRL1 regulated this process in vivo at the onset of low light levels. We found that PGRL1 regulation depended on active formation of key regulatory disulfides in the dark, and that PGR5 was required for this activity. The disulfide state of PGRL1 was modulated in plants by counteracting reductive and oxidative components and reached a balanced state that depended on the light level. We propose that the redox regulation of PGRL1 fine-tunes a timely activation of photosynthesis at the onset of low light.
PGR5 样光合作用表型 1(PGRL1)调节光系统 I 循环电子流,其在光照起始时短暂激活非光化学猝灭。在这里,我们表明,PGRL1 以二硫键为基础的机制在低光照水平开始时在体内调节了这一过程。我们发现,PGRL1 的调节依赖于黑暗中关键调节二硫键的活性形成,而 PGR5 是这一活性所必需的。在植物中,PGRL1 的二硫键状态通过拮抗还原和氧化成分来调节,并达到依赖于光水平的平衡状态。我们提出,PGRL1 的氧化还原调节可以精细调节在低光照开始时光合作用的及时激活。