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The Plant Journal : for Cell and Molecular Biology|September 28, 2004
Formation of an SCF(ZTL) complex is required for proper regulation of circadian timingLinqu Han, Mary Mason, Eddy P Risseeuw, et al.Methods in Molecular Biology (Clifton, N.J.)|November 11, 2020
Handling Arabidopsis and Other Brassicaceae: Growth, Preservation of Seeds, Transformation, and Genetic CrossesChristopher Calhoun, Deborah Crist, Emma Knee, et al.Iscience|August 6, 2021
Cost-effective circadian mechanism: rhythmic degradation of circadian proteins spontaneously emerges without rhythmic post-translational regulationRoktaek Lim, Junghun Chae, David E Somers, et al.In Silico Plants|April 4, 2022
Modelling of plant circadian clock for characterizing hypocotyl growth under different light quality conditionsMiao Lin Pay, Dae Wook Kim, David E Somers, et al.Methods in Enzymology|October 16, 2010
Characterization of pseudo-response regulators in plantsWoe-Yeon Kim, Patrice A Salomé, Sumire Fujiwara, et al.Communications Biology|December 5, 2018
Waveforms of molecular oscillations reveal circadian timekeeping mechanismsHang-Hyun Jo, Yeon Jeong Kim, Jae Kyoung Kim, et al.The New Phytologist|October 3, 2023
NUA positively regulates plant immunity by coordination with ESD4 to deSUMOylate TPR1 in ArabidopsisBao Xie, Mingyu Luo, Qiuyi Li, et al.Proceedings of the National Academy of Sciences of the United States of America|October 9, 2013
Arabidopsis CRY2 and ZTL mediate blue-light regulation of the transcription factor CIB1 by distinct mechanismsHongtao Liu, Qin Wang, Yawen Liu, et al.Biorxiv : the Preprint Server for Biology|June 4, 2026
Nuclear basket localized proteasomes maintain circadian period through nuclear TOC1 proteolysisYeon Jeong Kim, Breagha Magill, Jing-Wen Yao, et al.The Plant Cell|October 3, 2006
Arabidopsis FHY3 specifically gates phytochrome signaling to the circadian clockTrudie Allen, Athanasios Koustenis, George Theodorou, et al.Pageof 5