Stacey Harmer
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Plant Biology researcher
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Biology
Stacey Harmer's Degrees
- Bachelors Biology University of California, Berkeley
- PhD Plant Biology Stanford University
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Why Is Stacey Harmer Influential?
(Suggest an Edit or Addition)According to Wikipedia, Stacey Harmer is a chronobiologist whose work centers on the study of circadian rhythms in plants. Her research focuses on the molecular workings of the plant circadian clock and its influences on plant behaviors and physiology. She is a professor in the Department of Plant Biology at the University of California, Davis.
Stacey Harmer's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Orchestrated transcription of key pathways in Arabidopsis by the circadian clock. (2000) (1620)
- The Arabidopsis Nucleosome Remodeler DDM1 Allows DNA Methyltransferases to Access H1-Containing Heterochromatin (2013) (849)
- The circadian system in higher plants. (2009) (657)
- Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development (2008) (639)
- Rhythmic growth explained by coincidence between internal and external cues (2007) (633)
- Overlapping and Distinct Roles of PRR7 and PRR9 in the Arabidopsis Circadian Clock (2005) (442)
- Molecular bases of circadian rhythms. (2001) (373)
- The Circadian Clock Regulates Auxin Signaling and Responses in Arabidopsis (2007) (328)
- Critical Role for CCA1 and LHY in Maintaining Circadian Rhythmicity in Arabidopsis (2002) (302)
- Wheels within wheels: the plant circadian system. (2014) (295)
- Mechanical Stress Induces Biotic and Abiotic Stress Responses via a Novel cis-Element (2007) (246)
- REVEILLE1, a Myb-like transcription factor, integrates the circadian clock and auxin pathways (2009) (210)
- REVEILLE8 and PSEUDO-REPONSE REGULATOR5 Form a Negative Feedback Loop within the Arabidopsis Circadian Clock (2011) (198)
- GIGANTEA Acts in Blue Light Signaling and Has Biochemically Separable Roles in Circadian Clock and Flowering Time Regulation1[C][W][OA] (2006) (177)
- Jumonji domain protein JMJD5 functions in both the plant and human circadian systems (2010) (154)
- Circadian regulation of sunflower heliotropism, floral orientation, and pollinator visits (2016) (153)
- Genomic Analysis of Circadian Clock-, Light-, and Growth-Correlated Genes Reveals PHYTOCHROME-INTERACTING FACTOR5 as a Modulator of Auxin Signaling in Arabidopsis1[C][W][OA] (2011) (153)
- Accurate timekeeping is controlled by a cycling activator in Arabidopsis (2013) (152)
- Guidelines for Genome-Scale Analysis of Biological Rhythms (2017) (146)
- Network Quantitative Trait Loci Mapping of Circadian Clock Outputs Identifies Metabolic Pathway-to-Clock Linkages in Arabidopsis[C][W] (2011) (141)
- Positive and Negative Factors Confer Phase-Specific Circadian Regulation of Transcription in Arabidopsisw⃞ (2005) (132)
- Unanticipated regulatory roles for Arabidopsis phytochromes revealed by null mutant analysis (2013) (105)
- Activation-induced Association of a 145-kDa Tyrosine-phosphorylated Protein with Shc and Syk in B Lymphocytes and Macrophages (*) (1996) (101)
- Mutation of Arabidopsis SPLICEOSOMAL TIMEKEEPER LOCUS1 Causes Circadian Clock Defects[W] (2012) (99)
- The development of protein microarrays and their applications in DNA-protein and protein-protein interaction analyses of Arabidopsis transcription factors. (2008) (92)
- GIGANTEA Regulates Phytochrome A-Mediated Photomorphogenesis Independently of Its Role in the Circadian Clock1[W][OA] (2007) (74)
- Turning heads: the biology of solar tracking in sunflower. (2014) (70)
- The Src Homology Domain 2-Containing Inositol Phosphatase SHIP Forms a Ternary Complex with Shc and Grb2 in Antigen Receptor-stimulated B Lymphocytes* (1999) (65)
- YUCCA auxin biosynthetic genes are required for Arabidopsis shade avoidance (2016) (58)
- Multiple feedback loops of the Arabidopsis circadian clock provide rhythmic robustness across environmental conditions (2018) (55)
- Faculty Opinions recommendation of Photosynthetic entrainment of the Arabidopsis thaliana circadian clock. (2014) (55)
- XAP5 CIRCADIAN TIMEKEEPER Coordinates Light Signals for Proper Timing of Photomorphogenesis and the Circadian Clock in Arabidopsis[W] (2008) (53)
- Circadian regulation of hormone signaling and plant physiology (2016) (50)
- Reassess the t Test: Interact with All Your Data via ANOVA (2015) (49)
- The REVEILLE Clock Genes Inhibit Growth of Juvenile and Adult Plants by Control of Cell Size1[OPEN] (2017) (48)
- Circadian Rhythms in Plants. (2019) (46)
- Circadian Phase Has Profound Effects on Differential Expression Analysis (2012) (42)
- Growth-mediated plant movements: hidden in plain sight. (2018) (31)
- JMJD5 Functions in concert with TOC1 in the arabidopsis circadian system (2011) (31)
- XAP5 CIRCADIAN TIMEKEEPER Regulates Ethylene Responses in Aerial Tissues of Arabidopsis1[W][OA] (2010) (31)
- Circadian rhythms vary over the growing season and correlate with fitness components (2017) (29)
- A Constitutively Active Allele of Phytochrome B Maintains Circadian Robustness in the Absence of Light1[OPEN] (2015) (28)
- Microarrays: Determining the Balance of Cellular Transcription (2000) (27)
- Arabidopsis JMJD5/JMJ30 Acts Independently of LUX ARRHYTHMO Within the Plant Circadian Clock to Enable Temperature Compensation (2019) (18)
- Global profiling of the circadian transcriptome using microarrays. (2014) (16)
- Yeast X‐chromosome‐associated protein 5 (Xap5) functions with H2A.Z to suppress aberrant transcripts (2014) (13)
- Plant Biology in the Fourth Dimension1 (2010) (13)
- Faculty Opinions recommendation of Clocks in the green lineage: comparative functional analysis of the circadian architecture of the picoeukaryote ostreococcus. (2010) (10)
- Flower orientation influences floral temperature, pollinator visits, and plant fitness. (2021) (7)
- An Aspartate/Insulin Receptor Chimera Mitogenically Activates Fibroblasts* (1996) (7)
- Circadian Regulation of Global Gene Expression and Metabolism (2005) (6)
- XAP 5 CIRCADIAN TIMEKEEPER Regulates Ethylene Responses in Aerial Tissues of Arabidopsis 1 [ W ] [ OA ] (2011) (4)
- A TILLING by sequencing approach to identify induced mutations in sunflower genes (2021) (3)
- The circadian clock controls temporal and spatial patterns of floral development in sunflower (2022) (1)
- Focus on circadian rhythms (2022) (1)
- XAP5 CIRCADIAN TIMEKEEPER Affects Both DNA Damage Responses and Immune Signaling in Arabidopsis (2021) (1)
- Faculty Opinions recommendation of Mapping the core of the Arabidopsis circadian clock defines the network structure of the oscillator. (2012) (1)
- Flower orientation influences floral temperature, pollinator visits and plant fitness (2021) (0)
- Circadian regulation of hormone signaling and plant physiology (2016) (0)
- Interview with Stacey L. Harmer. (2014) (0)
- Future Perspectives in Plant Biology Plant Biology in the Fourth Dimension 1 (2010) (0)
- Faculty Opinions recommendation of A synchronized quorum of genetic clocks. (2010) (0)
- XAP5 CIRCADIAN TIMEKEEPER regulates RNA splicing and the circadian clock via genetically separable pathways (2023) (0)
- Plant Molecular Biology Circadian regulation of hormone signaling and plant physiology --Manuscript (2016) (0)
- Faculty Opinions recommendation of The clock gene circuit in Arabidopsis includes a repressilator with additional feedback loops. (2012) (0)
- Interactions Between Circadian and Photoreceptor Signaling Networks to Produce Complex Behaviors (2017) (0)
- Faculty Opinions recommendation of Precise genome modification in the crop species Zea mays using zinc-finger nucleases. (2009) (0)
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Stacey Harmer is affiliated with the following schools:
