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The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics

BACKGROUND: Ginseng, officially known as Panax ginseng Meyer, has been traditionally used as a medicinal herb, particularly in Asia. Ginseng is propagated from seeds; however, seed germination is challenging, especially in its natural environment on farms. The seeds typically exhibit morphophysiolog...

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Autores principales: Min, Jung Eun, Long, Nguyen Phuoc, Hong, Ji Yeon, Kim, Sun Jo, Anh, Nguyen Hoang, Wang, Daijie, Wang, Xiao, Park, Jeong Hill, Kwon, Sung Won, Lee, Seul Ji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058826/
https://www.ncbi.nlm.nih.gov/pubmed/35509817
http://dx.doi.org/10.1016/j.jgr.2021.06.005
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author Min, Jung Eun
Long, Nguyen Phuoc
Hong, Ji Yeon
Kim, Sun Jo
Anh, Nguyen Hoang
Wang, Daijie
Wang, Xiao
Park, Jeong Hill
Kwon, Sung Won
Lee, Seul Ji
author_facet Min, Jung Eun
Long, Nguyen Phuoc
Hong, Ji Yeon
Kim, Sun Jo
Anh, Nguyen Hoang
Wang, Daijie
Wang, Xiao
Park, Jeong Hill
Kwon, Sung Won
Lee, Seul Ji
author_sort Min, Jung Eun
collection PubMed
description BACKGROUND: Ginseng, officially known as Panax ginseng Meyer, has been traditionally used as a medicinal herb, particularly in Asia. Ginseng is propagated from seeds; however, seed germination is challenging, especially in its natural environment on farms. The seeds typically exhibit morphophysiological dormancy and require release from both morphological and physiological dormancy before germination. Although some studies have proposed methods for increasing seed germination rates, the underlying mechanisms of its dormancy release process remain unclear. Here, we investigated metabolic alterations during dehiscence in P. ginseng to determine their potential roles in dormancy release. METHODS: We compared the ginseng seed metabolome before and after dehiscence and the ginsenoside and phytosterol compositions of the seeds in both periods in the presence of related enzymes. RESULTS: After seed dehiscence, the sugar, amino acid, and squalene concentrations were significantly altered, phytosterols associated with the stigmasterol biosynthesis pathway were increased, while ginsenoside and brassinosteroid levels were not significantly altered. In addition, squalene epoxidase, cycloartenol synthase, 24-methylenesterol C-methyltransferase, and the stigmasterol biosynthesis pathway were activated. CONCLUSION: Overall, our findings suggest that morphological activities that facilitate ginseng seed growth are the primary phenomena occurring during the dehiscence process. This study improves the understanding of P. ginseng germination processes and promotes further research of its germination and cultivation.
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spelling pubmed-90588262022-05-03 The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics Min, Jung Eun Long, Nguyen Phuoc Hong, Ji Yeon Kim, Sun Jo Anh, Nguyen Hoang Wang, Daijie Wang, Xiao Park, Jeong Hill Kwon, Sung Won Lee, Seul Ji J Ginseng Res Research Article BACKGROUND: Ginseng, officially known as Panax ginseng Meyer, has been traditionally used as a medicinal herb, particularly in Asia. Ginseng is propagated from seeds; however, seed germination is challenging, especially in its natural environment on farms. The seeds typically exhibit morphophysiological dormancy and require release from both morphological and physiological dormancy before germination. Although some studies have proposed methods for increasing seed germination rates, the underlying mechanisms of its dormancy release process remain unclear. Here, we investigated metabolic alterations during dehiscence in P. ginseng to determine their potential roles in dormancy release. METHODS: We compared the ginseng seed metabolome before and after dehiscence and the ginsenoside and phytosterol compositions of the seeds in both periods in the presence of related enzymes. RESULTS: After seed dehiscence, the sugar, amino acid, and squalene concentrations were significantly altered, phytosterols associated with the stigmasterol biosynthesis pathway were increased, while ginsenoside and brassinosteroid levels were not significantly altered. In addition, squalene epoxidase, cycloartenol synthase, 24-methylenesterol C-methyltransferase, and the stigmasterol biosynthesis pathway were activated. CONCLUSION: Overall, our findings suggest that morphological activities that facilitate ginseng seed growth are the primary phenomena occurring during the dehiscence process. This study improves the understanding of P. ginseng germination processes and promotes further research of its germination and cultivation. Elsevier 2022-03 2021-06-15 /pmc/articles/PMC9058826/ /pubmed/35509817 http://dx.doi.org/10.1016/j.jgr.2021.06.005 Text en © 2021 The Korean Society of Ginseng. Publishing services by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Min, Jung Eun
Long, Nguyen Phuoc
Hong, Ji Yeon
Kim, Sun Jo
Anh, Nguyen Hoang
Wang, Daijie
Wang, Xiao
Park, Jeong Hill
Kwon, Sung Won
Lee, Seul Ji
The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics
title The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics
title_full The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics
title_fullStr The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics
title_full_unstemmed The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics
title_short The dehiscence process in Panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics
title_sort dehiscence process in panax ginseng seeds and the stigmasterol biosynthesis pathway in terms of metabolomics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058826/
https://www.ncbi.nlm.nih.gov/pubmed/35509817
http://dx.doi.org/10.1016/j.jgr.2021.06.005
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