425 results on '"McClung, C. Robertson"'
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2. Rhythmic Leaf and Cotyledon Movement Analysis
3. HOS15 Interacts with the Histone Deacetylase HDA9 and the Evening Complex to Epigenetically Regulate the Floral Activator GIGANTEA
4. Circadian control of ORE1 by PRR9 positively regulates leaf senescence in Arabidopsis
5. Time to build on good design : Resolving the temporal dynamics of gene regulatory networks
6. The Photorespiratory Arabidopsis shm1 Mutant Is Deficient in SHM1
7. Circadian Control of Messenger RNA Stability. Association with a Sequence-Specific Messenger RNA Decay Pathway
8. PSEUDO-RESPONSE REGULATOR 7 and 9 Are Partially Redundant Genes Essential for the Temperature Responsiveness of the Arabidopsis Circadian Clock
9. SPINDLY and GIGANTEA Interact and Act in Arabidopsis thaliana Pathways Involved in Light Responses, Flowering, and Rhythms in Cotyledon Movements
10. Enhanced Fitness Conferred by Naturally Occurring Variation in the Circadian Clock
11. Enhancer Trapping Reveals Widespread Circadian Clock Transcriptional Control in Arabidopsis
12. Two Arabidopsis Circadian Oscillators Can Be Distinguished by Differential Temperature Sensitivity
13. Phase-Specific Circadian Clock Regulatory Elements in Arabidopsis
14. The out of phase 1 Mutant Defines a Role for PHYB in Circadian Phase Control in Arabidopsis
15. Integrated Temporal Regulation of the Photorespiratory Pathway. Circadian Regulation of Two Arabidopsis Genes Encoding Serine Hydroxymethyltransferase
16. Imbibition, but Not Release from Stratification, Sets the Circadian Clock in Arabidopsis Seedlings
17. Identification of an Arabidopsis thaliana Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Activase (RCA) Minimal Promoter Regulated by Light and the Circadian Clock
18. Catalase Is Encoded by a Multigene Family in Arabidopsis thaliana (L.) Heynh
19. LUX ARRHYTHMO mediates crosstalk between the circadian clock and defense in Arabidopsis
20. Transcriptional networks — crops, clocks, and abiotic stress
21. Allelic polymorphism of GIGANTEA is responsible for naturally occurring variation in circadian period in Brassica rapa
22. LNK1 and LNK2 Are Transcriptional Coactivators in the Arabidopsis Circadian Oscillator
23. A Role for CHH Methylation in the Parent-of-Origin Effect on Altered Circadian Rhythms and Biomass Heterosis in Arabidopsis Intraspecific Hybrids
24. Making Hunger Yield
25. Beyond Arabidopsis: The circadian clock in non-model plant species
26. Reciprocal Interaction of the Circadian Clock with the Iron Homeostasis Network in Arabidopsis
27. SKIP Is a Component of the Spliceosome Linking Alternative Splicing and the Circadian Clock in Arabidopsis
28. Preferential Retention of Circadian Clock Genes during Diploidization following Whole Genome Triplication in Brassica rapa
29. Quantitative Variation in Water-Use Efficiency across Water Regimes and Its Relationship with Circadian, Vegetative, Reproductive, and Leaf Gas-Exchange Traits
30. Type II protein arginine methyltransferase 5 (PRMT5) is required for circadian period determination in Arabidopsis thaliana
31. The Role of the Arabidopsis Morning Loop Components CCA1, LHY, PRR7, and PRR9 in Temperature Compensation
32. Robust Circadian Rhythms of Gene Expression in Brassica rapa Tissue Culture
33. Linking the Loops
34. Arabidopsis Photorespiratory Serine Hydroxymethyltransferase Activity Requires the Mitochondrial Accumulation of Ferredoxin-Dependent Glutamate Synthase
35. Circadian Timekeeping during Early Arabidopsis Development
36. Systems Approach Identifies an Organic Nitrogen-Responsive Gene Network That Is Regulated by the Master Clock Control Gene CCA1
37. Circadian Rhythms: Lost in Post-Translation
38. Roles of intracellular hydrogen peroxide accumulation in abscisic acid signaling in Arabidopsis guard cells
39. The Cyanobacterial Circadian Clock Is Based on the Intrinsic ATPase Activity of KaiC
40. Additional file 1 of Diurnal RNAPII-tethered chromatin interactions are associated with rhythmic gene expression in rice
41. Two-Component Signaling Provides the Major Output from the Cyanobacterial Circadian Clock
42. Plant Circadian Rhythms
43. Arabidopsis Response Regulators ARR3 and ARR4 Play Cytokinin-Independent Roles in the Control of Circadian Period
44. Ambient Thermometers in Plants: From Physiological Outputs towards Mechanisms of Thermal Sensing
45. Network news: prime time for systems biology of the plant circadian clock
46. Darwinian Evolution Across the Disciplines
47. Interactions between Light and the Circadian Clock in the Regulation of CAT2 Expression in Arabidopsis
48. Molecular Basis of the Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Activase Mutation in Arabidopsis thaliana Is a Guanine-to-Adenine Transition at the 5′-Splice Junction of Intron 3
49. Differential Involvement of the Circadian Clock in the Expression of Genes Required for Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Synthesis, Assembly, and Activation in Arabidopsis thaliana
50. Effects of Synergistic Signaling by Phytochrome A and Cryptochrome1 on Circadian Clock-Regulated Catalase Expression
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