Liu Ying, Wang Xiaoyun, Jing Shirui, Jia Congyang, Li Hongxin, Li Chonghua, He Qiuyu, Zhang Na, Guo Yang-Dong
College of Horticulture, China Agricultural University, Beijing, 100193, China.
College of Plant Science and Technology, Beijing University of Agriculture, Beijing, 102206, China.
Adv Sci (Weinh). 2025 Mar;12(11):e2413485. doi: 10.1002/advs.202413485. Epub 2025 Jan 23.
Plants exhibit remarkable regenerative abilities under stress conditions like injury, herbivory, and damage from harsh weather, particularly through adventitious root formation. They have sophisticated molecular mechanisms to recognize and respond to wounding. Jasmonic acid (JA), a wound hormone, triggers auxin synthesis to stimulate root regeneration. Melatonin (MT), structurally similar to auxin, also significantly influences root induction, but its specific mechanism is unclear. Phytomelatonin's signal transduction is discovered in wound-induced root formation, identifying SlPMTR1/2 as phytomelatonin receptors, transmitting signals to SHOOT BORNE ROOTLESS 1 (SlSBRL1), a key regulator of wound-induced root regeneration, via the G protein α subunit 1 (SlGPA1). Additionally, SlPMTR1/2 is activated by JA, and targeted by SlMYC2. Overall, the specific mechanisms of phytomelatonin on wound-induced root regeneration is uncovered and revealed a crosstalk between phytomelatonin and JA, offering new insights into plant repair mechanisms.
植物在诸如受伤、食草动物侵害以及恶劣天气损害等胁迫条件下展现出显著的再生能力,尤其是通过不定根形成。它们拥有复杂的分子机制来识别并应对创伤。茉莉酸(JA)作为一种创伤激素,会触发生长素合成以刺激根再生。褪黑素(MT)在结构上与生长素相似,也对根诱导有显著影响,但其具体机制尚不清楚。植物褪黑素的信号转导在创伤诱导的根形成过程中被发现,确定SlPMTR1/2为植物褪黑素受体,通过G蛋白α亚基1(SlGPA1)将信号传递给创伤诱导根再生的关键调节因子无根地上茎1(SlSBRL1)。此外,SlPMTR1/2被JA激活,并受到SlMYC2的靶向作用。总体而言,揭示了植物褪黑素对创伤诱导根再生的具体机制,并揭示了植物褪黑素与JA之间的相互作用,为植物修复机制提供了新的见解。