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Proceedings of the National Academy of Sciences of the United States of America|January 23, 2014
Spatiotemporal separation of PER and CRY posttranslational regulation in the mammalian circadian clockPeter C St John, Tsuyoshi Hirota, Steve A Kay, et al.Proceedings of the National Academy of Sciences of the United States of America|December 22, 2016
Arabidopsis B-BOX32 interacts with CONSTANS-LIKE3 to regulate floweringPrateek Tripathi, Marcela Carvallo, Elizabeth E Hamilton, et al.Proceedings of the National Academy of Sciences of the United States of America|October 30, 2014
HsfB2b-mediated repression of PRR7 directs abiotic stress responses of the circadian clockElsebeth Kolmos, Brenda Y Chow, Jose L Pruneda-Paz, et al.Nature|November 4, 2014
Tissue-specific clocks in Arabidopsis show asymmetric couplingMotomu Endo, Hanako Shimizu, Maria A Nohales, et al.Current Biology : CB|May 15, 2002
Critical role for CCA1 and LHY in maintaining circadian rhythmicity in ArabidopsisDavid Alabadí, Marcelo J Yanovsky, Paloma Más, et al.Journal of Cell Science|September 12, 2022
The actin cytoskeleton-MRTF/SRF cascade transduces cellular physical niche cues to entrain the circadian clockXuekai Xiong, Weini Li, Jin Nam, et al.The Plant Journal : for Cell and Molecular Biology|October 16, 2024
The clock-associated LUX ARRHYTHMO regulates high-affinity nitrate transport in Arabidopsis rootsSilvana Porco, Shi Yu, Tong Liang, et al.Frontiers in Plant Science|January 11, 2019
Secondary Wall Regulating NACs Differentially Bind at the Promoter at a CELLULOSE SYNTHASE A4 Cis-eQTLJennifer R Olins, Li Lin, Scott J Lee, et al.Annals of Botany|April 17, 2014
Genotype, development and tissue-derived variation of cell-wall properties in the lignocellulosic energy crop MiscanthusRicardo M F da Costa, Scott J Lee, Gordon G Allison, et al.Nature|November 25, 2003
FKF1 is essential for photoperiodic-specific light signalling in ArabidopsisTakato Imaizumi, Hien G Tran, Trevor E Swartz, et al.Pageof 19