Biologyarticle2026-08-07

Exogenous Melatonin Compensates for Moderate Nitrogen Reduction in Upland Rice by Optimizing Leaf Nitrogen Allocation and Photosynthetic Metabolism

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Abstract

ABSTRACT Moderate nitrogen (N) reduction can lower production costs in upland rice but may constrain photosynthesis, N assimilation, and yield formation. Melatonin has the potential to regulate photosynthesis and nutrient metabolism; however, whether it improves the effectiveness of reduced N application by altering functional leaf N allocation remains unclear. A 2‐year field experiment was conducted in 2024 and 2025 with four N application rates (0, 120, 160, and 200 kg N ha −1 ) and foliar applications of either water or 100 μmol L −1 melatonin. Photosynthetic performance, functional leaf N allocation, N metabolism, and grain yield were evaluated. An additional inhibition experiment using p‐chlorophenylalanine (p‐CPA) was also conducted. The beneficial effects of melatonin were observed mainly at N application rates of 120 and 160 kg N ha −1 . In 2024 and 2025, grain yield under N2M1 was 7.27% and 8.19% higher, respectively, than under N2M0 and did not differ significantly from that under the conventional N treatment without melatonin (N3M0). Melatonin increased the net photosynthetic rate, maximum Rubisco carboxylation rate (Vcmax), and maximum electron transport rate (Jmax). At 160 kg N ha −1 , the model‐estimated proportion of N allocated to photosynthetic functions at the full heading stage increased from 73.55% to 86.79%, whereas the proportion of storage N decreased from 16.66% to 2.86%. Photosynthetic N‐use efficiency (PNUE = Pn/leaf N content per unit area) increased by 11.10%, accompanied by improvements in nitrate reductase (NR) and glutamine synthetase (GS) activities and N fertilizer‐use efficiency. The p‐CPA treatment reduced endogenous melatonin content, photosynthetic performance, and N metabolism, whereas exogenous melatonin supplementation partially restored these responses. In conclusion, the effects of exogenous melatonin on upland rice were strongly dependent on N supply. At 160 kg N ha −1 , melatonin produced marked compensatory effects on photosynthetic performance and grain yield. These responses were associated with improved photosynthetic capacity, model‐estimated functional N allocation, and N assimilation, indicating that combining melatonin application with a 20% reduction in N fertilizer has potential for maintaining upland rice yield.

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View paper (DOI)OpenAlexJournal of Pineal ResearchPublished 2026-08-07

Authors: Qin Bin, Ji Leyao, Jiang Meixuan, Jiang Xinhang, Zhang Zhixing, Fang Changxun, Lin Wenxiong

Institutions: Fujian Agriculture and Forestry University