Exogenous melatonin on photosynthesis and physiological characteristics in maize under drought stress
Hafeez Noor, Kuang Sheng

TL;DR
This study shows that melatonin improves drought tolerance in maize by boosting photosynthesis and reducing stress, especially in drought-tolerant varieties.
Contribution
The study reveals melatonin's role in co-activating photosynthetic and antioxidant pathways in maize under drought stress.
Findings
Melatonin application improved CO₂ assimilation and photosynthetic performance under drought stress.
Melatonin activated antioxidant enzymes and reduced oxidative stress markers like H₂O₂ and MDA.
Drought-tolerant maize genotype SD-609 showed a stronger response to melatonin than SD-902.
Abstract
Drought stress severely limits maize production in Northwest China. Although melatonin is known to enhance plant stress tolerance, its specific mechanisms in maize have not been fully elucidated. To address this, we investigated whether melatonin improves drought tolerance using two contrasting maize genotypes: drought–tolerant (SD–609) and drought–sensitive (SD–902). A experiment was conducted under drought stress with and without melatonin application, in which we have analyzed photosynthetic parameters, antioxidant enzyme activities, oxidative stress markers, key components of CO₂ assimilation, and dry matter accumulation. Under drought stress, melatonin application significantly enhanced photosynthetic performance by improving dark reactions (upregulation of CO₂ assimilation enzymes and genes). It concurrently activated the antioxidant system (SOD, CAT, POD, and the AsA–GSH cycle),…
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Taxonomy
TopicsCircadian rhythm and melatonin · Light effects on plants · Plant Stress Responses and Tolerance
