Effects of GA on clock in WT and prr9prr7
| Property | Value |
|---|---|
| BioDare ID | 3838 |
| Author | Daniel Seaton |
| Institution | University of Edinburgh |
| License | CC_BY |
Description
Purpose
To test whether GA has any effect on circadian clock period in the WT, and whether this effect is altered in the prr9prr7 mutant.
Comments
SEEK ID: https://fairdomhub.org/assays/2920
Experimental assay
Projects: BioDare1
Investigation: Chew Yin Hoon
Study: Chew et al. (2022)
Assay position:
Assay type: Experimental Assay Type
Technology type: Technology Type
Organisms: Arabidopsis thaliana
Export PNG
Creators and SubmitterViews: 9
Created: 18th Jun 2026 at 12:50
Last updated: 18th Jun 2026 at 12:52
TagsThis item has not yet been tagged.
Related items
Projects: Millar group, BioDare1
Institutions: University of Edinburgh, School of Biological Sciences, University of Edinburgh
https://orcid.org/0000-0002-1352-7245
Expertise: Data Management, Python, R, Programming, microscopy, fluorescence protein fusions, Software Engineering
Tools: Data Management, Python, R, Fluorescence and confocal microscopy, Time-lapse fluorescence microscopy Flow cytometry, Fluorecence based reporter gene analyses/single cell analyses
Research Software Engineer in the Biological Research Data Management team (BioRDM) at the University of Edinburgh.
The Centre for Engineering Biology is the University of Edinburgh's research organisation in interdisciplinary, Synthetic and Systems Biology, founded in 2023 as the successor to SynthSys, itself founded in 2012 as the successor to the Centre for Systems Biology at Edinburgh (CSBE). CSBE was newly founded in 2007. The Centre for Engineering Biology is a hub organisation that links across multiple, major funding awards, including an Engineering Biology Mission Hub, and EPSRC C-loop.
Projects: Millar group, PHYTOCAL: Phytochrome Control of Resource Allocation and Growth in Arabidopsis and in Brassicaceae crops, TiMet, POP - the Parameter Optimisation Problem, Regulation of flowering time in natural conditions, PlaSMo model repository, BioDare1
Web page: https://biology.ed.ac.uk/centre-engineering-biology
Experiment data previously hosted on the original version of BioDare (biodare.ed.ac.uk).
Programme: Centre for Engineering Biology (prev. SynthSys)
Public web page: Not specified
Organisms: Not specified
Collection of experiments created by Chew Yin Hoon on the original BioDare and automatically transferred to FAIRDOM Hub.
Submitter: Daniel Thedie
Studies: Chew et al. (2022)
Snapshots: No snapshots
The Arabidopsis Framework Model version 2 predicts the organism-level effects of circadian clock gene mis-regulation
Chew et al. (2022)
DOI: 10.1093/insilicoplants/diac010
Submitter: Daniel Thedie
Investigation: Chew Yin Hoon
Snapshots: No snapshots
300915_Ham2_GA_p97_experiment (from BioDare)
Investigations: Chew Yin Hoon
Studies: Chew et al. (2022)
metamorph_output_abridged.2 (from BioDare)
Investigations: Chew Yin Hoon
Studies: Chew et al. (2022)
List of samples used in the assay (extracted from original BioDare metadata and converted to csv)
Investigations: Chew Yin Hoon
Studies: Chew et al. (2022)
Original BioDare metadata, converted to json format
Investigations: Chew Yin Hoon
Studies: Chew et al. (2022)
Readme file
Investigations: Chew Yin Hoon
Studies: Chew et al. (2022)
Download