Department of Horticulture, Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zijingang Campus, Zhejiang University, Hangzhou, China.
Key Laboratory of Horticultural Plants Growth, Development and Quality Improvement, Agricultural Ministry of China, Hangzhou, China.
J Pineal Res. 2018 Nov;65(4):e12526. doi: 10.1111/jpi.12526. Epub 2018 Oct 20.
Melatonin (MEL) has been revealed as a phylogenetically conserved molecule with a ubiquitous distribution from primitive photosynthetic bacteria to higher plants, including algae and fungi. Since MEL is implicated in numerous plant developmental processes and stress responses, the exploration of its functions in plant has become a rapidly progressing field with the new paradigm of involvement in plants growth and development. The pleiotropic involvement of MEL in regulating the transcripts of numerous genes confirms its vital involvement as a multi-regulatory molecule that architects many aspects of plant development. However, the cumulative research in plants is still preliminary and fragmentary in terms of its established functions compared to what is known about MEL physiology in animals. This supports the need for a comprehensive review that summarizes the new aspects pertaining to its functional role in photosynthesis, phytohormonal interactions under stress, cellular redox signaling, along with other regulatory roles in plant immunity, phytoremediation, and plant microbial interactions. The present review covers the latest advances on the mechanistic roles of phytomelatonin. While phytomelatonin is a sovereign plant growth regulator that can interact with the functions of other plant growth regulators or hormones, its qualifications as a complete phytohormone are still to be established. This review also showcases the yet to be identified potentials of phytomelatonin that will surely encourage the plant scientists to uncover new functional aspects of phytomelatonin in plant growth and development, subsequently improving its status as a potential new phytohormone.
褪黑素(MEL)已被揭示为一种进化上保守的分子,从原始光合细菌到高等植物,包括藻类和真菌,都有广泛的分布。由于 MEL 参与了许多植物发育过程和应激反应,因此探索其在植物中的功能已成为一个快速发展的领域,其新的范式涉及植物的生长和发育。MEL 广泛参与调节众多基因的转录,证实了其作为一种多调控分子的重要作用,它构建了植物发育的许多方面。然而,与动物中褪黑素生理学相比,植物中累积的研究在其已建立的功能方面仍然是初步的和零碎的。这支持了需要进行全面综述的需求,以总结与光合作用、胁迫下植物激素相互作用、细胞氧化还原信号以及植物免疫、植物修复和植物微生物相互作用中的其他调节作用相关的新方面。本综述涵盖了植物褪黑素功能作用的最新进展。虽然植物褪黑素是一种主权植物生长调节剂,可以与其他植物生长调节剂或激素的功能相互作用,但它作为一种完整植物激素的资格仍有待确定。本综述还展示了植物褪黑素尚未确定的潜力,这肯定会鼓励植物科学家在植物生长和发育中揭示植物褪黑素的新功能方面,从而提高其作为一种潜在新植物激素的地位。