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Sign in to add traineeRuishuang Geng | grad student | 2006 | Ohio State |
Linqu Han | grad student | 2006 | Ohio State |
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Publications
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Xie B, Luo M, Li Q, et al. (2023) NUA positively regulates plant immunity by coordination with ESD4 to deSUMOylate TPR1 in Arabidopsis. The New Phytologist |
Cha JY, Kim J, Jeong SY, et al. (2022) The Na/H antiporter SALT OVERLY SENSITIVE 1 regulates salt compensation of circadian rhythms by stabilizing GIGANTEA in . Proceedings of the National Academy of Sciences of the United States of America. 119: e2207275119 |
Pay ML, Kim DW, Somers DE, et al. (2022) Modelling of plant circadian clock for characterizing hypocotyl growth under different light quality conditions. In Silico Plants. 4: diac001 |
Yan J, Li S, Kim YJ, et al. (2021) TOC1 clock protein phosphorylation controls complex formation with NF-YB/C to repress hypocotyl growth. The Embo Journal. e108684 |
Lim R, Chae J, Somers DE, et al. (2021) Cost-effective circadian mechanism: rhythmic degradation of circadian proteins spontaneously emerges without rhythmic post-translational regulation. Iscience. 24: 102726 |
Yan J, Kim YJ, Somers DE. (2021) Post-Translational Mechanisms of Plant Circadian Regulation. Genes. 12 |
Kim YJ, Somers DE. (2019) Luciferase-Based Screen for Post-translational Control Factors in the Regulation of the Pseudo-Response Regulator PRR7. Frontiers in Plant Science. 10: 667 |
Jo HH, Kim YJ, Kim JK, et al. (2018) Waveforms of molecular oscillations reveal circadian timekeeping mechanisms. Communications Biology. 1: 207 |
Jo HH, Kim YJ, Kim JK, et al. (2018) Waveforms of molecular oscillations reveal circadian timekeeping mechanisms. Communications Biology. 1: 207 |
Ritter A, Iñigo S, Fernández-Calvo P, et al. (2017) The transcriptional repressor complex FRS7-FRS12 regulates flowering time and growth in Arabidopsis. Nature Communications. 8: 15235 |