数字农科院2.0

Recent advances in melatonin regulation of drought tolerance in plants

文献类型: 外文期刊

作者: Mingzhao Luo;Dandan Zhang;Wensi Tang;Pierre Delaplace;Ming Chen;Youzhi Ma

作者机构:

关键词: Drought;Melatonin;Plant hormones;Reactive oxygen species

期刊名称: Tropical Plants

ISSN: 2833-9851

年卷期: 2025 年 4 卷 1 期

页码:

收录情况: CSCD(2025-2026年度)

摘要: Drought stress significantly impacts crop growth, development, and productivity. However, emerging research highlights the pivotal role of melatonin as a versatile molecule in enhancing plant resilience. Studies have emphasized melatonin's ability to effectively scavenge reactive oxygen species (ROS) while also orchestrating a spectrum of physiological responses crucial for plant survival under drought conditions. Melatonin's regulatory influence extends to critical processes such as germination, root development, and leaf senescence, positioning it as a crucial agent in mitigating drought stress. Beyond its antioxidative properties, melatonin mediates drought tolerance through complex interactions with membrane receptor proteins like phyto-melatonin receptor 1 (PMTR1) and potentially activates signaling pathways, including the mitogen-activated protein kinase (MAPK) cascade and transcription factors, to regulate downstream effectors. Recent investigations have also illuminated melatonin's interactions with various phytohormones, plant microbiomes, and flavonoids, further enhancing its role in drought tolerance. This comprehensive review systematically explores the mechanisms by which melatonin modulates drought tolerance. Additionally, several promising directions are proposed for future research aimed at elucidating the multifaceted roles of melatonin and potential applications in enhancing drought tolerance in agricultural systems.

分类号:

  • 相关文献

[1]LIGNIN: A DEFENSIVE SHIELD HALTING THE ENVIRONMENTAL STRESSES - A REVIEW. Khan, P.,Tong, L.,Khan, S. U.,Zhang, C.,Wang, W.. 2022

[2]How does jasmonic acid improve drought tolerance? Mechanisms and future prospects. Tahir Abbas KHAN,Hadiqa HASSAN,Haocheng WANG,Muhammad INZAMAMULHAQ,Imran ASHRAF,Fang LUO,Hamad KHAN,Guoqin HUANG. 2024

[3]Exogenous melatonin enhances low-temperature stress of jute seedlings through modulation of photosynthesis and antioxidant potential. Susmita Dey,Ashok Biswas,Yong Deng,Ziggiju Mesenbet Birhanie,Chen Wentao,Defang Li. 2023

[4]Melatonin enhances drought tolerance by affecting jasmonic acid and lignin biosynthesis in wheat (Triticum aestivum L.). Mingzhao Luo,Daoping Wang,Pierre Delaplace,Yinghong Pan,Yongbin Zhou,Wensi Tang,Kai Chen,Jun Chen,Zhaoshi Xu,Youzhi Ma,Ming Chen. 2023

[5]Exogenous melatonin alleviates drought stress in cotton by enhancing root cortical activity and metabolic adaptation. Haitao Zhang,Congcong Guo,Hongchun Sun,Lingxiao Zhu,Ke Zhang,Yongjiang Zhang,Zhanbiao Wang,Cundong Li,Liantao Liu. 2025

[6]Leucine-Rich Repeat Receptor-Like Kinase FON1 Regulates Drought Stress and Seed Germination by Activating the Expression of ABA-Responsive Genes in Rice. Feng, Lei,Gao, Zhenrui,Xiao, Guiqing,Huang, Rongfeng,Zhang, Haiwen,Huang, Rongfeng,Zhang, Haiwen.

[7]Sandbur Drought Tolerance Reflects Phenotypic Plasticity Based on the Accumulation of Sugars, Lipids, and Flavonoid Intermediates and the Scavenging of Reactive Oxygen Species in the Root. Zhiyuan Yang,Chao Bai,Peng Wang,Wei Dong Fu,Le Wang,Zhen Song,Xin Xi,Hanwen Wu,Guo-Liang Zhang*,Jia-He Wu. 2021

[8]Sandbur drought tolerance reflects phenotypic plasticity based on the accumulation of sugars, lipids, and flavonoid intermediates and the scavenging of reactive oxygen species in the root. Zhiyuan Yang,Chao Bai,Peng Wang,Weidong Fu,Le Wang,Zhen Song,Xin Xi,Hanwen Wu,Guoliang Zhang,Jiahe Wu. 2022

[9]RGA1-Mediated Crosstalk of Hormonal, Metabolic, and Redox Networks Sustains Anther Fertility Under Drought Stress in Rice. Wenhui Yan,Wenfei Hu,Feitong Li,Huanran Wang,Wenting Wang,Yuxiang Zeng,Jiang Hu,Zhihai Wu,Guanfu Fu,Tingting Chen. 2025

[10]Fluctuation in levels of endogenous plant hormones in ovules of normal and mutant cotton during flowering and their relation to fiber development. Chen, JG,Du, XM,Zhao, HY,Zhou, X. 1996

[11]Simultaneous Analysis of Multiple Endogenous Plant Hormones in Leaf Tissue of Oilseed Rape by Solid-phase Extraction Coupled with High-performance Liquid Chromatography-Electrospray Ionisation Tandem Mass Spectrometry. Li, Yan-hua,Wei, Fang,Dong, Xu-yan,Peng, Jin-hua,Liu, Sheng-yi,Chen, Hong. 2011

[12]Translational researches on leaf senescence for enhancing plant productivity and quality. Guo, Yongfeng,Gan, Su-Sheng,Gan, Su-Sheng.

[13]Interactive Effects of Intraspecific Competition and Drought on Stomatal Conductance and Hormone Concentrations in Different Tomato Genotypes. Yang Gao,Yueping Liang,Yuanyuan Fu,Zhuanyun Si,Abdoul Kader Mounkaila Hamani. 2022

[14]Uncovering the complex regulatory network of spring bud sprouting in tea plants: insights from metabolic, hormonal, and oxidative stress pathways. Junwei Tang,Yao Chen,Chao Huang,Congcong Li,Yue Feng,Haoqian Wang,Changqing Ding,Nana Li,Lu Wang,Jianming Zeng,Yajun Yang,Xinyuan Hao,Xinchao Wang. 2023

[15]Jasmonic acid: a key frontier in conferring abiotic stress tolerance in plants. Ali Raza,Sidra Charagh,Zainab Zahid,Muhammad Salman Mubarik,Rida Javed,Manzer H. Siddiqui,Mirza Hasanuzzaman. 2021

[16]Metabolic Profiles Reveal Changes in the Leaves and Roots of Rapeseed (Brassica napus L.) Seedlings under Nitrogen Deficiency. Shen, Xinjie,Yang, Ling,Han, Peipei,Gu, Chiming,Li, Yinshui,Liao, Xing,Qin, Lu. 2022

[17]Hormonal regulation of health-promoting compounds in tea (Camellia sinensis L.). Golam Jalal Ahammed,Xin Li. 2022

[18]Preliminary Analysis, Combined with Omics of Chilling Injury Mechanism of Peach Fruits with Different Cold Sensitivities during Postharvest Cold Storage. Zhan W.,Wang Y.,Duan W.,Li A.,Miao Y.,Wang H.,Meng J.,Liu H.,Niu L.,Pan L.,Sun S.,Cui G.,Wang Z.,Zeng W.. 2024

[19]Functional Analysis of the GhIQD1 Gene in Cotton Resistance to Verticillium Wilt. Xu J.,Zhou T.,Wang Y.,Yang Y.,Pu Y.,Chen Q.,Zheng K.,Sun G.. 2024

[20]Gibberellins-independent stem length regulation by YABBY1 in cucurbit crops. Shenhao Wang,Xueyong Yang. 2023

作者其他论文 更多>>