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Department of Chemistry
Seoul National University, Seoul 08826, Korea
E-mail: pjseo1@snu.ac.kr
seolab.creatorlink.net
Area of expertise: Plant regeneration, tissue culture, epigenetics, plant-environment interaction.
Selected Publications:
Won, J.H., Park, J., Lee, H.G., Shim, S., Lee, H., Oh, E., and Seo, P.J. (2024). The PRR–EC complex and SWR1 chromatin remodeling complex function cooperatively to repress nighttime hypocotyl elongation by modulating PIF4 expression in Arabidopsis. Plant Commun. 5: 100981.
Lee, K., Yoon, H., Park, O.S., Lim, J., Kim, S.G., and Seo, P.J. (2024). ESR2–HDA6 complex exerts negative feedback regulation of auxin biosynthesis to delay callus initiation from Arabidopsis leaf explants during tissue culture. Plant Commun. 5: 100892.
Lee, K., Yoon, H., Park, O.S., and Seo, P.J. (2024). ENHANCER OF SHOOT REGENERATION1 promotes de novo root organogenesis after wounding in Arabidopsis leaf explants. Plant Cell 36: 2359–2374.
Koo, D., Lee, H.G., Bae, S.H., Lee, K., and Seo, P.J. (2024). Callus proliferation-induced hypoxic microenvironment decreases shoot regeneration competence in Arabidopsis. Mol. Plant 17: 395–408.
Hong, C., Lee, H.G., Shim, S., Park, O.S., Kim, J.H., Lee, K., Oh, E., Kim, J., Jung, Y.J., and Seo, P.J. (2024). Histone modification-dependent production of peptide hormones facilitates acquisition of pluripotency during leaf-to-callus transition in Arabidopsis. New Phytol. 242: 1068–1083.
Lee, H.G., Jang, S.Y., Jie, E.Y., Choi, S.H., Park, O.S., Bae, S.H., Kim, H.S., Kim, S.W., Hwang, G.S., and Seo, P.J. (2023). Adenosine monophosphate enhances callus regeneration competence for de novo plant organogenesis. Mol. Plant 16: 1867–1870.
Lee, H., and Seo, P.J. (2023). Accessible gene borders establish a core structural unit for chromatin architecture in Arabidopsis. Nucleic Acid Res. 51: 10261–10277.
Seo, P.J., Lee, H.G., Choi, H.Y., Lee, S., and Park, C.M. (2023). Complexity of SMAX1 signaling during seedling establishment. Trends Plant Sci. 28: 902–912.
Lee, K., Park, O.S., Go, J.Y., Yu, J., Han, J.H., Kim, J., Bae, S., Jung, Y.J., and Seo, P.J. (2021). Arabidopsis ATXR2 represses de novo shoot organogenesis in the transition from callus to shoot formation. Cell Rep. 37: 109980.
Lee, H.J., and Seo, P.J. (2021). Ca2+talyzing initial responses to environmental stresses. Trends Plant Sci. 26: 849–870.
Tong, M., Lee, K., Ezer, D., Cortijo, S., Jung, J.H., Charoensawan, V., Box, M.S., Jaeger, K., Takahashi, N., Mas, P., Wigge, P.A., and Seo, P.J. (2020). The Evening Complex establishes repressive chromatin domains via H2A.Z deposition in Arabidopsis. Plant Physiol. 182: 612–625.
Lee, H.G., and Seo, P.J. (2019). MYB96 recruits the HDA15 protein to suppress negative regulators of ABA signaling in Arabidopsis. Nat. Commun. 10: 1713.
Lee, K., and Seo, P.J. (2018). Dynamic epigenetic changes during plant regeneration. Trend Plant Sci. 23: 235–247.
Lee, K., Park, O.S., and Seo, P.J. (2017). Arabidopsis ATXR2 deposits H3K36me3 at the promoters of LBD genes to facilitate cellular dedifferentiation. Science Signaling 10: eaan0316.
Lee, H.G., and Seo, P.J. (2016) The Arabidopsis MIEL1 E3 ligase negatively regulates ABA signaling by promoting protein turnover of MYB96. Nat. Commun. 7: 12525.
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