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Physiologia Plantarum|June 23, 2025
Rice RING E3 Ligase OsRFP45 Negatively Regulates Salt Tolerance by Modulating Na+/K+ Transporter GenesMin Seok Choi, Jong Ho Kim, Cheol Seong JangFood Science and Biotechnology|May 18, 2026
Development of a SYBR Green-based quantitative PCR assay for the detection of Undaria pinnatifida and Endarachne binghamiae using chloroplast markers in processed seaweed productsSu Yeon Kim, Ju Hee Kim, Cheol Seong JangPlanta|December 30, 2017
Oryza sativa salt-induced RING E3 ligase 2 (OsSIRP2) acts as a positive regulator of transketolase in plant response to salinity and osmotic stressSandeep Chapagain, Yong Chan Park, Ju Hee Kim, et al.Plant, Cell & Environment|July 21, 2019
A rice really interesting new gene H2-type E3 ligase, OsSIRH2-14, enhances salinity tolerance via ubiquitin/26S proteasome-mediated degradation of salt-related proteinsYong Chan Park, Sung Don Lim, Jun-Cheol Moon, et al.Gene|June 19, 2012
Molecular characterization and concerted evolution of two genes encoding RING-C2 type proteins in riceChang Gyo Jung, Sung Don Lim, Sun-Goo Hwang, et al.International Journal of Molecular Sciences|February 10, 2024
Antioxidant Activity Analysis of Native Actinidia arguta CultivarsYu Kyong Hu, Soo Jae Kim, Cheol Seong Jang, et al.Food Science and Biotechnology|February 19, 2024
Correction to: Development of real‑time PCR‑based markers for differentiation of Oplopanax elatus and Aralia cordata in commercial food productsYo Ram Uh, Yeon Mi Kim, Myeong Jo Kim, et al.Food Science and Biotechnology|October 23, 2023
Development of real-time PCR-based markers for differentiation of Oplopanax elatus and Aralia cordata in commercial food productsYo Ram Uh, Yeon Mi Kim, Myeong Jo Kim, et al.Planta|January 21, 2015
Rice RING E3 ligase may negatively regulate gamma-ray response to mediate the degradation of photosynthesis-related proteinsYong Chan Park, Jung Ju Kim, Dong Sub Kim, et al.Physiologia Plantarum|December 26, 2023
Overexpression of a C3HC4-type E3-ubiquitin ligase contributes to salinity tolerance by modulating Na+ homeostasis in riceJong Ho Kim, Sung Don Lim, Ki-Hong Jung, et al.Pageof 8