Melatonin soaking promotes germination of aged Atractylodes macrocephala seeds by GSH cycle activation and phenylpropanoid reprogramming to support superior mitochondrial function

Seed aging restricts seedling propagation and sustainable cultivation of Atractylodes macrocephala Koidz. ( A. macrocephala ), a genuine herb from Zhejiang. While melatonin (MT) alleviates germination inhibition under abiotic stress, its mechanisms in rejuvenating aged A. macrocephala seeds remain unclear. Naturally aged A. macrocephala seeds were soaked with 0.1 mM MT or distilled water for 24 h before germination assays. MT-soaked seeds showed 43.9%, 66.7%, and 136.7% higher germination rates, germination potential, and vigor index, respectively, indicating rejuvenation in aged seeds. Transcriptomic and biochemical analysis revealed that MT upregulated genes and enzyme activities involved in the reduced glutathione (GSH) cycle and reprogrammed phenylpropanoid metabolism toward flavonoid biosynthesis. The resultant increases in GSH, flavonoid, and proanthocyanidin levels enhanced antioxidant defense, which lowered O 2 •⁻ production rate, H₂O₂ and malondialdehyde contents. Restored mitochondrial ultrastructure was also observed in MT-soaked seeds. Additionally, most differentially expressed genes related to starch catabolism, glycolysis, the citrate cycle, and oxidative phosphorylation were upregulated, accompanied by elevated ATP contents. Results indicate that MT-induced rejuvenation on A. macrocephala aged seeds is associated with reinforced antioxidant defense, repaired mitochondrial structure, and improved ATP supply. This work provides a theoretical and practical basis for improving seedling quality and promoting the sustainable cultivation of medicinal herbs.

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Publication Details

Journal
Industrial Crops and Products
Published
2026-09-30
DOI
https://doi.org/10.1016/j.indcrop.2026.124480
Primary Topic
Seed Germination and Physiology
Type
article
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article

Melatonin soaking promotes germination of aged Atractylodes macrocephala seeds by GSH cycle activation and phenylpropanoid reprogramming to support superior mitochondrial function

Qiaomei Zheng, Christina Avanti, Ning Sui, Jiayi Qi et al.
Industrial Crops and Products
Seed Germination and Physiology
article

Melatonin soaking promotes germination of aged Atractylodes macrocephala seeds by GSH cycle activation and phenylpropanoid reprogramming to support superior mitochondrial function

Qiaomei Zheng, Christina Avanti, Ning Sui, Jiayi Qi, Lijuan Bao, Honghai Zhu, Qishuo Yang, Haoran Jiang, Yayun Wu, Hui Wang
article en

Abstract

Seed aging restricts seedling propagation and sustainable cultivation of Atractylodes macrocephala Koidz. ( A. macrocephala ), a genuine herb from Zhejiang. While melatonin (MT) alleviates germination inhibition under abiotic stress, its mechanisms in rejuvenating aged A. macrocephala seeds remain unclear. Naturally aged A. macrocephala seeds were soaked with 0.1 mM MT or distilled water for 24 h before germination assays. MT-soaked seeds showed 43.9%, 66.7%, and 136.7% higher germination rates, germination potential, and vigor index, respectively, indicating rejuvenation in aged seeds. Transcriptomic and biochemical analysis revealed that MT upregulated genes and enzyme activities involved in the reduced glutathione (GSH) cycle and reprogrammed phenylpropanoid metabolism toward flavonoid biosynthesis. The resultant increases in GSH, flavonoid, and proanthocyanidin levels enhanced antioxidant defense, which lowered O 2 •⁻ production rate, H₂O₂ and malondialdehyde contents. Restored mitochondrial ultrastructure was also observed in MT-soaked seeds. Additionally, most differentially expressed genes related to starch catabolism, glycolysis, the citrate cycle, and oxidative phosphorylation were upregulated, accompanied by elevated ATP contents. Results indicate that MT-induced rejuvenation on A. macrocephala aged seeds is associated with reinforced antioxidant defense, repaired mitochondrial structure, and improved ATP supply. This work provides a theoretical and practical basis for improving seedling quality and promoting the sustainable cultivation of medicinal herbs.

Industrial Crops and ProductsVol. 252
Zhejiang Chinese Medical University (CN), University of Surabaya (ID), Hangzhou Medical College (CN)
Responsible consumption and production
Openalex Percentile: Top 13%
Seed Germination and Physiology
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