Joint International Research Laboratory of Agriculture and Agri-Product Safety of the Ministry of Education of China, Yangzhou University, Yangzhou 225009, China.
Key Lab of Crop Genetics & Physiology of Jiangsu Province, Yangzhou University, Yangzhou 225009, China.
Int J Mol Sci. 2023 May 15;24(10):8759. doi: 10.3390/ijms24108759.
Phyto-melatonin improves crop yield by mitigating the negative effects of abiotic stresses on plant growth. Numerous studies are currently being conducted to investigate the significant performance of melatonin in crops in regulating agricultural growth and productivity. However, a comprehensive review of the pivotal performance of phyto-melatonin in regulating plant morpho-physiological and biochemical activities under abiotic stresses needs to be clarified. This review focused on the research on morpho-physiological activities, plant growth regulation, redox status, and signal transduction in plants under abiotic stresses. Furthermore, it also highlighted the role of phyto-melatonin in plant defense systems and as biostimulants under abiotic stress conditions. The study revealed that phyto-melatonin enhances some leaf senescence proteins, and that protein further interacts with the plant's photosynthesis activity, macromolecules, and changes in redox and response to abiotic stress. Our goal is to thoroughly evaluate phyto-melatonin performance under abiotic stress, which will help us better understand the mechanism by which phyto-melatonin regulates crop growth and yield.
植物褪黑素通过减轻非生物胁迫对植物生长的负面影响来提高作物产量。目前正在进行大量研究,以调查褪黑素在调节农业生长和生产力方面对作物的重要性能。然而,需要阐明植物褪黑素在调节植物形态生理和生化活性方面在非生物胁迫下的关键性能。本综述重点研究了非生物胁迫下植物形态生理活性、植物生长调节、氧化还原状态和信号转导。此外,还强调了植物褪黑素在植物防御系统和非生物胁迫条件下作为生物刺激剂的作用。研究表明,植物褪黑素增强了一些叶片衰老蛋白,而这些蛋白质进一步与植物的光合作用活性、大分子以及氧化还原和对非生物胁迫的反应发生相互作用。我们的目标是彻底评估植物褪黑素在非生物胁迫下的性能,这将帮助我们更好地理解植物褪黑素调节作物生长和产量的机制。