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논문 기본 정보

자료유형
학술저널
저자정보
Kyoung Rok Geem (Chungbuk National University) Jaewook Kim (Chungnam National University) Wonsil Bae (Chungbuk National University) Moo-Geun Jee (Chungnam Agricultural Research & Extention Service) Jin Yu (Rural Development Administration) Inbae Jang (Rural Development Administration) Dong-Yun Lee (Korea Ginseng) Chang Pyo Hong (Theragen Bio) Donghwan Shim (Chungnam National University) Hojin Ryu (Chungbuk National University)
저널정보
고려인삼학회 Journal of Ginseng Research Journal of Ginseng Research Vol.47 No.3
발행연도
2023.5
수록면
469 - 478 (10page)

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Background: Nitrogen (N) is an essential macronutrient for plant growth and development. To support agricultural production and enhance crop yield, two major N sources, nitrate and ammonium, are applied as fertilizers to the soil. Although many studies have been conducted on N uptake and signal transduction, the molecular genetic mechanisms of N-mediated physiological roles, such as the secondary growth of storage roots, remain largely unknown.
Methods: One-year-old P. ginseng seedlings treated with KNO3 were analyzed for the secondary growth of storage roots. The histological paraffin sections were subjected to bright and polarized light microscopic analysis. Genome-wide RNA-seq and network analysis were carried out to dissect the molecular mechanism of nitrate-mediated promotion of ginseng storage root thickening.
Results: Here, we report the positive effects of nitrate on storage root secondary growth in Panax ginseng. Exogenous nitrate supply to ginseng seedlings significantly increased the root secondary growth. Histological analysis indicated that the enhancement of root secondary growth could be attributed to the increase in cambium stem cell activity and the subsequent differentiation of cambium-derived storage parenchymal cells. RNA-seq and gene set enrichment analysis (GSEA) revealed that the formation of a transcriptional network comprising auxin, brassinosteroid (BR)-, ethylene-, and jasmonic acid (JA)-related genes mainly contributed to the secondary growth of ginseng storage roots. In addition, increased proliferation of cambium stem cells by a N-rich source inhibited the accumulation of starch granules in storage parenchymal cells.
Conclusion: Thus, through the integration of bioinformatic and histological tissue analyses, we demonstrate that nitrate assimilation and signaling pathways are integrated into key biological processes that promote the secondary growth of P. ginseng storage roots.

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ABSTRACT
1. Introduction
2. Materials and methods
3. Results
4. Discussion
References

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