How plants tell the time.
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[1] E. M. Meyerowitz,et al. Arabidopsis thaliana , 2022, CABI Compendium.
[2] J. Aschoff,et al. Circadian rhythms: influences of internal and external factors on the period measured in constant conditions. , 2010 .
[3] Anthony Hall,et al. FLOWERING LOCUS C Mediates Natural Variation in the High-Temperature Response of the Arabidopsis Circadian Clock[W] , 2006, The Plant Cell Online.
[4] D. Rand,et al. Uncovering the design principles of circadian clocks: mathematical analysis of flexibility and evolutionary goals. , 2006, Journal of theoretical biology.
[5] D. E. Somers,et al. Forward Genetic Analysis of the Circadian Clock Separates the Multiple Functions of ZEITLUPE1[W] , 2006, Plant Physiology.
[6] M. W. Young,et al. PER-TIM Interactions in Living Drosophila Cells: An Interval Timer for the Circadian Clock , 2006, Science.
[7] Yves Gibon,et al. Sugars and Circadian Regulation Make Major Contributions to the Global Regulation of Diurnal Gene Expression in Arabidopsis[W][OA] , 2005, The Plant Cell Online.
[8] M. Ishiura,et al. PHYTOCLOCK 1 encoding a novel GARP protein essential for the Arabidopsis circadian clock , 2005, Genes to cells : devoted to molecular & cellular mechanisms.
[9] P. Quail,et al. ELF4 is a phytochrome-regulated component of a negative-feedback loop involving the central oscillator components CCA1 and LHY. , 2005, The Plant journal : for cell and molecular biology.
[10] François Parcy,et al. The mRNA of the Arabidopsis Gene FT Moves from Leaf to Shoot Apex and Induces Flowering , 2005, Science.
[11] K. Goto,et al. FD, a bZIP Protein Mediating Signals from the Floral Pathway Integrator FT at the Shoot Apex , 2005, Science.
[12] Wolfgang Busch,et al. Integration of Spatial and Temporal Information During Floral Induction in Arabidopsis , 2005, Science.
[13] M. Kimura,et al. Circadian rhythm of circumnutation in inflorescence stems of Arabidopsis. , 2005, Plant & cell physiology.
[14] C. R. McClung,et al. Circadian Control of Messenger RNA Stability. Association with a Sequence-Specific Messenger RNA Decay Pathway1[w] , 2005, Plant Physiology.
[15] Anthony Hall,et al. Plant Circadian Clocks Increase Photosynthesis, Growth, Survival, and Competitive Advantage , 2005, Science.
[16] Jose L Pruneda-Paz,et al. LUX ARRHYTHMO encodes a Myb domain protein essential for circadian rhythms. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[17] S. Kay,et al. FKF1 F-Box Protein Mediates Cyclic Degradation of a Repressor of CONSTANS in Arabidopsis , 2005, Science.
[18] G. Coupland,et al. Distinct Roles of GIGANTEA in Promoting Flowering and Regulating Circadian Rhythms in Arabidopsis , 2005, The Plant Cell Online.
[19] P. Hardin,et al. Circadian rhythms from multiple oscillators: lessons from diverse organisms , 2005, Nature Reviews Genetics.
[20] Paul E. Brown,et al. Extension of a genetic network model by iterative experimentation and mathematical analysis , 2005, Molecular systems biology.
[21] M S Turner,et al. Modelling genetic networks with noisy and varied experimental data: the circadian clock in Arabidopsis thaliana. , 2005, Journal of theoretical biology.
[22] S. Kay,et al. Positive and Negative Factors Confer Phase-Specific Circadian Regulation of Transcription in Arabidopsisw⃞ , 2005, The Plant Cell Online.
[23] Fred W. Turek,et al. Obesity and Metabolic Syndrome in Circadian Clock Mutant Mice , 2005, Science.
[24] T. Mizuno,et al. Pseudo-Response Regulators (PRRs) or True Oscillator Components (TOCs). , 2005, Plant & cell physiology.
[25] Takeshi Mizuno,et al. PSEUDO-RESPONSE REGULATORS, PRR9, PRR7 and PRR5, together play essential roles close to the circadian clock of Arabidopsis thaliana. , 2005, Plant & cell physiology.
[26] Rongcheng Lin,et al. Light Regulates COP1-Mediated Degradation of HFR1, a Transcription Factor Essential for Light Signaling in Arabidopsis , 2005, The Plant Cell Online.
[27] I. Carré,et al. DET1 regulates the proteasomal degradation of LHY, a component of the Arabidopsis circadian clock , 2005, Plant Molecular Biology.
[28] C Robertson McClung,et al. PSEUDO-RESPONSE REGULATOR 7 and 9 Are Partially Redundant Genes Essential for the Temperature Responsiveness of the Arabidopsis Circadian Clock , 2005, The Plant Cell Online.
[29] Stacey L. Harmer,et al. Overlapping and Distinct Roles of PRR7 and PRR9 in the Arabidopsis Circadian Clock , 2005, Current Biology.
[30] M. W. Young,et al. Posttranscriptional and Posttranslational Regulation of Clock Genes , 2004, Journal of biological rhythms.
[31] K. Shinozaki,et al. Identification of ASK and clock-associated proteins as molecular partners of LKP2 (LOV kelch protein 2) in Arabidopsis. , 2004, Journal of experimental botany.
[32] M. Ikeda. Calcium Dynamics and Circadian Rhythms in Suprachiasmatic Nucleus Neurons , 2004, The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry.
[33] P. Ruoff,et al. A Nitrate-Induced frq-Less Oscillator in Neurospora crassa , 2004, Journal of biological rhythms.
[34] S. Crosthwaite,et al. Circadian clocks and natural antisense RNA , 2004, FEBS Letters.
[35] C. R. McClung,et al. SPINDLY and GIGANTEA Interact and Act in Arabidopsis thaliana Pathways Involved in Light Responses, Flowering, and Rhythms in Cotyledon Movements , 2004, The Plant Cell Online.
[36] A. Webb,et al. Circadian and Diurnal Calcium Oscillations Encode Photoperiodic Information in Arabidopsis , 2004, The Plant Cell Online.
[37] Alex A. R. Webb,et al. Independent circadian regulation of assimilation and stomatal conductance in the ztl-1 mutant of Arabidopsis , 2004 .
[38] E. Tobin,et al. CK2 phosphorylation of CCA1 is necessary for its circadian oscillator function in Arabidopsis. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[39] D. E. Somers,et al. The F-Box Protein ZEITLUPE Confers Dosage-Dependent Control on the Circadian Clock, Photomorphogenesis, and Flowering Time Online version contains Web-only data. , 2004, The Plant Cell Online.
[40] D. Ravenscroft,et al. Photoreceptor Regulation of CONSTANS Protein in Photoperiodic Flowering , 2004, Science.
[41] D. E. Somers,et al. Targeted degradation of TOC1 by ZTL modulates circadian function in Arabidopsis thaliana , 2003, Nature.
[42] S. Kay,et al. FKF1 is essential for photoperiodic-specific light signalling in Arabidopsis , 2003, Nature.
[43] Andrew J Millar,et al. Input signals to the plant circadian clock. , 2003, Journal of experimental botany.
[44] C. R. McClung,et al. Enhanced Fitness Conferred by Naturally Occurring Variation in the Circadian Clock , 2003, Science.
[45] Alex A R Webb,et al. The physiology of circadian rhythms in plants. , 2003, The New phytologist.
[46] P. Quail,et al. Arabidopsis PSEUDO-RESPONSE REGULATOR7 Is a Signaling Intermediate in Phytochrome-Regulated Seedling Deetiolation and Phasing of the Circadian Clock Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.015065. , 2003, The Plant Cell Online.
[47] Todd E. Woerner,et al. A cell surface receptor mediates extracellular Ca2+ sensing in guard cells , 2003, Nature.
[48] C Robertson McClung,et al. Two Arabidopsis circadian oscillators can be distinguished by differential temperature sensitivity , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[49] D. E. Somers,et al. Circadian phase-specific degradation of the F-box protein ZTL is mediated by the proteasome , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[50] M. Merrow,et al. The Network of Time: Understanding the Molecular Circadian System , 2003, Current Biology.
[51] J. Dunlap,et al. Role for antisense RNA in regulating circadian clock function in Neurospora crassa , 2003, Nature.
[52] G. Coupland,et al. Shedding light on the circadian clock and the photoperiodic control of flowering. , 2003, Current opinion in plant biology.
[53] Hur-Song Chang,et al. Transcriptome Changes for Arabidopsis in Response to Salt, Osmotic, and Cold Stress1,212 , 2002, Plant Physiology.
[54] A. Hall,et al. Distinct regulation of CAB and PHYB gene expression by similar circadian clocks. , 2002, The Plant journal : for cell and molecular biology.
[55] Takao Kondo,et al. KaiA-stimulated KaiC phosphorylation in circadian timing loops in cyanobacteria , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[56] C. R. McClung,et al. Phase-Specific Circadian Clock Regulatory Elements in Arabidopsis1 , 2002, Plant Physiology.
[57] Andrew J. Millar,et al. The ELF4 gene controls circadian rhythms and flowering time in Arabidopsis thaliana , 2002, Nature.
[58] R. Sharrock,et al. Patterns of Expression and Normalized Levels of the Five Arabidopsis Phytochromes1 , 2002, Plant Physiology.
[59] A. Millar,et al. The Circadian Clock That Controls Gene Expression in Arabidopsis Is Tissue Specific1 , 2002, Plant Physiology.
[60] P. Devlin,et al. Signs of the time: environmental input to the circadian clock. , 2002, Journal of experimental botany.
[61] S. Kay,et al. tej defines a role for poly(ADP-ribosyl)ation in establishing period length of the arabidopsis circadian oscillator. , 2002, Developmental cell.
[62] E. Tobin,et al. Circadian Rhythms Confer a Higher Level of Fitness to Arabidopsis Plants1 , 2002, Plant Physiology.
[63] Tsuyoshi Mizoguchi,et al. LHY and CCA1 are partially redundant genes required to maintain circadian rhythms in Arabidopsis. , 2002, Developmental cell.
[64] Stacey L. Harmer,et al. Critical Role for CCA1 and LHY in Maintaining Circadian Rhythmicity in Arabidopsis , 2002, Current Biology.
[65] H. Ueda,et al. Genome-wide Transcriptional Orchestration of Circadian Rhythms inDrosophila * 210 , 2002, The Journal of Biological Chemistry.
[66] C. R. McClung,et al. The Arabidopsis Circadian System , 2002, The arabidopsis book.
[67] S. Kay,et al. A Role for LKP2 in the Circadian Clock of Arabidopsis Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.010332. , 2001, The Plant Cell Online.
[68] A. Hall,et al. Conditional circadian regulation of PHYTOCHROME A gene expression. , 2001, Plant physiology.
[69] A Hall,et al. Circadian clock-regulated expression of phytochrome and cryptochrome genes in Arabidopsis. , 2001, Plant physiology.
[70] S. Kay,et al. Time zones: a comparative genetics of circadian clocks , 2001, Nature Reviews Genetics.
[71] D. A. Baxter,et al. Modeling Circadian Oscillations with Interlocking Positive and Negative Feedback Loops , 2001, The Journal of Neuroscience.
[72] Steve A. Kay,et al. Reciprocal Regulation Between TOC1 and LHY/CCA1 Within the Arabidopsis Circadian Clock , 2001, Science.
[73] Y Yang,et al. Interlocked feedback loops contribute to the robustness of the Neurospora circadian clock , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[74] Michael F. Covington,et al. ELF3 Modulates Resetting of the Circadian Clock in Arabidopsis , 2001, The Plant Cell Online.
[75] D. R. Wagner,et al. EARLY FLOWERING3 Encodes a Novel Protein That Regulates Circadian Clock Function and Flowering in Arabidopsis , 2001, The Plant Cell Online.
[76] P. Ruoff,et al. The nitrate reductase circadian system. The central clock dogma contra multiple oscillatory feedback loops. , 2001, Plant physiology.
[77] A. Trewavas,et al. The calcium rhythms of different cell types oscillate with different circadian phases. , 2001, Plant physiology.
[78] Robert J. Schaffer,et al. Microarray Analysis of Diurnal and Circadian-Regulated Genes in Arabidopsis , 2001, The Plant Cell.
[79] S. Kay,et al. Orchestrated transcription of key pathways in Arabidopsis by the circadian clock. , 2000, Science.
[80] Anthony Hall,et al. The ELF3 zeitnehmer regulates light signalling to the circadian clock , 2000, Nature.
[81] E. Tobin,et al. All in good time: the Arabidopsis circadian clock. , 2000, Trends in plant science.
[82] S. Kay,et al. Cryptochromes Are Required for Phytochrome Signaling to the Circadian Clock but Not for Rhythmicity , 2000, Plant Cell.
[83] Martha Merrow,et al. Circadian clocks: Omnes viae Romam ducunt , 2000, Current Biology.
[84] G. Coupland,et al. ZEITLUPE and FKF1: novel connections between flowering time and circadian clock control. , 2000, Trends in plant science.
[85] P. Lakin-Thomas,et al. sn-1,2-diacylglycerol levels in the fungus Neurospora crassa display circadian rhythmicity. , 2000, The Journal of biological chemistry.
[86] M. Estelle,et al. F-box proteins and protein degradation: An emerging theme in cellular regulation , 2000, Plant Molecular Biology.
[87] A. Hall,et al. Functional independence of circadian clocks that regulate plant gene expression , 2000, Current Biology.
[88] D. E. Somers,et al. Cloning of the Arabidopsis clock gene TOC1, an autoregulatory response regulator homolog. , 2000, Science.
[89] A. Millar. Clock proteins: Turned over after hours? , 2000, Current Biology.
[90] D. E. Somers,et al. ZEITLUPE Encodes a Novel Clock-Associated PAS Protein from Arabidopsis , 2000, Cell.
[91] B. Bartel,et al. FKF1, a Clock-Controlled Gene that Regulates the Transition to Flowering in Arabidopsis , 2000, Cell.
[92] P. Lakin-Thomas. Circadian rhythms: new functions for old clock genes. , 2000, Trends in genetics : TIG.
[93] I. Skerjanc,et al. Myocyte Enhancer Factor 2C and Myogenin Up-regulate Each Other's Expression and Induce the Development of Skeletal Muscle in P19 Cells* , 2000, The Journal of Biological Chemistry.
[94] A Hall,et al. The circadian clock controls the expression pattern of the circadian input photoreceptor, phytochrome B. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[95] C. Johnson,et al. Different circadian oscillators control Ca(2+) fluxes and lhcb gene expression. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[96] Till Roenneberg,et al. Assignment of circadian function for the Neurospora clock gene frequency , 1999, Nature.
[97] J. Dunlap. Molecular Bases for Circadian Clocks , 1999, Cell.
[98] D. E. Somers,et al. Phytochromes and cryptochromes in the entrainment of the Arabidopsis circadian clock. , 1998, Science.
[99] E. Tobin,et al. Protein kinase CK2 interacts with and phosphorylates the Arabidopsis circadian clock-associated 1 protein. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[100] S. Golden,et al. Resonating circadian clocks enhance fitness in cyanobacteria. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[101] Joanna Putterill,et al. The late elongated hypocotyl Mutation of Arabidopsis Disrupts Circadian Rhythms and the Photoperiodic Control of Flowering , 1998, Cell.
[102] Thomas K. Darlington,et al. Closing the circadian loop: CLOCK-induced transcription of its own inhibitors per and tim. , 1998, Science.
[103] T Roenneberg,et al. Molecular Circadian Oscillators: An Alternative Hypothesis , 1998, Journal of biological rhythms.
[104] D. E. Somers,et al. The short-period mutant, toc1-1, alters circadian clock regulation of multiple outputs throughout development in Arabidopsis thaliana. , 1998, Development.
[105] S. Kay,et al. Integration of circadian and phototransduction pathways in the network controlling CAB gene transcription in Arabidopsis. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[106] D. E. Somers,et al. Conditional Circadian Dysfunction of the Arabidopsis early-flowering 3 Mutant , 1996, Science.
[107] P. Masson,et al. Circadian oscillations of cytosolic and chloroplastic free calcium in plants. , 1995, Science.
[108] J Chory,et al. The regulation of circadian period by phototransduction pathways in Arabidopsis , 1995, Science.
[109] C. Strayer,et al. Circadian clock mutants in Arabidopsis identified by luciferase imaging , 1995, Science.
[110] J. W. Hastings,et al. Different Phase Responses of the Two Circadian Oscillators in Gonyaulax , 1994, Journal of biological rhythms.
[111] T. Roenneberg,et al. Two circadian oscillators in one cell , 1993, Nature.
[112] C. Field,et al. Evidence of Multiple Circadian Oscillators in Bean Plants , 1992, Journal of biological rhythms.
[113] J. Takahashi,et al. Sensitivity and integration in a visual pathway for circadian entrainment in the hamster (Mesocricetus auratus). , 1991, The Journal of physiology.
[114] S. Kay,et al. Circadian Control of cab Gene Transcription and mRNA Accumulation in Arabidopsis. , 1991, The Plant cell.
[115] S. Dunbar,et al. Obesity and the Metabolic Syndrome , 2006 .
[116] John Love,et al. The plant clock shows its metal: circadian regulation of cytosolic free Ca(2+). , 2005, Trends in plant science.
[117] S. Davis,et al. Pseudo-response regulator genes 'tell' the time of day: multiple feedbacks in the circadian system of higher plants , 2005 .
[118] C. R. McClung,et al. What makes the Arabidopsis clock tick on time? A review on entrainment , 2005 .
[119] K. Apel,et al. The circadian clock regulated RNA-binding protein AtGRP7 autoregulates its expression by influencing alternative splicing of its own pre-mRNA. , 2003, The Plant journal : for cell and molecular biology.
[120] C. Johnson. Endogenous timekeepers in photosynthetic organisms. , 2001, Annual review of physiology.
[121] S. Kay,et al. Molecular bases of circadian rhythms. , 2001, Annual review of cell and developmental biology.
[122] S. Kay,et al. Circadian photoperception. , 2001, Annual review of physiology.
[123] R. Deshaies. SCF and Cullin/Ring H2-based ubiquitin ligases. , 1999, Annual review of cell and developmental biology.
[124] A. Millar,et al. Circadian dysfunction causes aberrant hypocotyl elongation patterns in Arabidopsis. , 1999, The Plant journal : for cell and molecular biology.
[125] W. Engelmann. Rhythms in organ movement , 1998 .
[126] E. Maywood,et al. Entrainment of the circadian clock. , 1996, Progress in brain research.
[127] Karen L. Smith,et al. Chapter 11 Entrainment of the circadian clock , 1996 .
[128] C S Pittendrigh,et al. Temporal organization: reflections of a Darwinian clock-watcher. , 1993, Annual review of physiology.
[129] A. Kahn,et al. The Cell Surface , 1974, Advances in Experimental Medicine and Biology.