Photosynthesis Research Center, Key Laboratory of Photobiology, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
New Phytol. 2023 Oct;240(2):676-693. doi: 10.1111/nph.19156. Epub 2023 Aug 7.
Reactive carbonyl species (RCS) derived from lipid peroxides can act as critical damage or signaling mediators downstream of reactive oxygen species by modifying target proteins. However, their biological effects and underlying mechanisms remain largely unknown in plants. Here, we have uncovered the mechanism by which the RCS 4-hydroxy-(E)-2-nonenal (HNE) participates in photosystem II (PSII) repair cycle of chloroplasts, a crucial process for maintaining PSII activity under high and changing light conditions. High Light Sensitive 1 (HLT1) is a potential NADPH-dependent reductase in chloroplasts. Deficiency of HLT1 had no impact on the growth of Arabidopsis plants under normal light conditions but increased sensitivity to high light, which resulted from a defective PSII repair cycle. In hlt1 plants, the accumulation of HNE-modified D1 subunit of PSII was observed, which did not affect D1 degradation but hampered the dimerization of repaired PSII monomers and reassembly of PSII supercomplexes on grana stacks. HLT1 is conserved in all photosynthetic organisms and has functions in overall growth and plant fitness in both Arabidopsis and rice under naturally challenging field conditions. Our work provides the mechanistic basis underlying RCS scavenging in light acclimation and suggests a potential strategy to improve plant productivity by manipulating RCS signaling in chloroplasts.
活性羰基物质(RCS)来源于脂质过氧化物,可以通过修饰靶蛋白,作为活性氧物质下游的关键损伤或信号转导介质。然而,它们在植物中的生物学效应和潜在机制在很大程度上仍然未知。在这里,我们揭示了活性羰基物质 4-羟基-(E)-2-壬烯醛(HNE)参与叶绿体光系统 II(PSII)修复循环的机制,这是在高光和不断变化的光照条件下维持 PSII 活性的关键过程。高光敏感 1(HLT1)是叶绿体中一种潜在的 NADPH 依赖性还原酶。HLT1 缺陷在正常光照条件下对拟南芥植物的生长没有影响,但对高光的敏感性增加,这是由于 PSII 修复循环受损所致。在 hlt1 植物中,观察到 HNE 修饰的 PSII D1 亚基的积累,这不会影响 D1 的降解,但阻碍了修复的 PSII 单体的二聚化和 PSII 超复合物在粒层堆栈上的重新组装。HLT1 在所有光合生物中都保守,并且在自然挑战的田间条件下,在拟南芥和水稻中具有整体生长和植物适应性的功能。我们的工作为光适应中 RCS 清除的机制提供了基础,并提出了通过操纵叶绿体中的 RCS 信号来提高植物生产力的潜在策略。