Related Experiment Video
Updated: Jan 10, 2026

The Caco-2 Cell Bioassay for Measurement of Food Iron Bioavailability
Published on: April 28, 2022
Melatonin improves nutrient uptake and confers Cd tolerance in mung bean via Cd detoxification and redox regulation
Liping Huang1, Guangxin Chen1, Yue Liu1
1School of Agriculture and Bioengineering, Foshan University, Guangdong, Foshan, 528241, China.
Abstract:
Cadmium (Cd) contamination in agricultural soils severely threatens crop productivity and food safety. Mung bean (Vigna radiata), a globally important legume, is highly susceptible to Cd toxicity, which disrupts nutrient homeostasis, photosynthesis, and redox balance. Melatonin (Mel), a pleiotropic signaling molecule, has emerged as a potential mitigator of abiotic stresses, but its mechanisms of Cd tolerance in mung bean remain poorly understood. Here, we demonstrate that Mel alleviates Cd toxicity by: (1) facilitating internal Cd sequestration by promoting its deposition in the leaf cell wall and vacuolar compartmentalization, a process mediated by the upregulation of key transporter genes PCR2 (Plant Cadmium Resistance 2) and HMA (Heavy Metal ATPase); (2) restricting Cd entry into the plant by downregulating the expression of root metal influx transporters, namely ZIP1 (Zinc-regulated, Iron-regulated Transporter-like Protein 1) and YSL3 (Yellow Stripe-Like 3); and (3) counteracting Cd-induced nutritional deficits achieved through the activation of plasma membrane H+-ATPase and the enhancement of the nitrate reductase (NR)/glutamine synthetase-glutamate synthase (GS-GOGAT) pathway. Concurrently, Mel treatment robustly improved redox homeostasis by significantly boosting the activities of major antioxidant enzymes (SOD; CAT; APX) and stimulating the biosynthesis of phytochelatins for Cd chelation. Genome-wide transcriptomic profiling further corroborated these physiological observations, revealing Mel's targeted regulation of a comprehensive gene network implicated in metal trafficking, cell wall fortification, and reactive oxygen species (ROS) scavenging. Overall, this work provides novel insights into the mechanistic basis of Mel-induced Cd tolerance and underscores its potential as an effective agro-biotechnological strategy for safeguarding crop plants in metal-contaminated environments.
More Related Videos
Related Concept Videos
Key Elements for Plant Nutrition
Responses to Salt Stress
Biological Clocks and Seasonal Responses
Overview of Metabolism
Plant Metabolism
Sunlight, the primary source of energy in plants, is first absorbed by the chlorophyll pigments present in their leaves. Plants then use this energy to carry out photosynthesis, where water is oxidized into oxygen and carbon dioxide...

