Plant development is strongly influenced by external light cues, yet we know very little of how this is mediated at a molecular level. This BBSRC funded project seeks to determine how phytochrome light receptor signalling connects with the developmental pathways to control plant architecture.
Web page: http://hallidaylab.bio.ed.ac.uk
Funding codes:- BB/M025551/1
Bilateral NSF/BIO-BBSRC: Modelling Light Control of Development
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- People (5)
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Projects: Light and plant development
Institutions: University of Edinburgh
Projects: PHYTOCAL: Phytochrome Control of Resource Allocation and Growth in Arabidopsis and in Brassicaceae crops, Light and plant development, Light control of leaf development
Institutions: University of Edinburgh
https://orcid.org/0000-0003-0737-2408Expertise: arabidopsis thaliana, caenorhabditis elegans, circadian rhythms, chronobiology, Transcriptomics, splicing, alternative splicing, R, photobiology, plant architecture, leaf development
Tools: Molecular Biology, Molecular biology techniques (RNA/DNA/Protein), R, Systems Biology, Transcriptomics, Bioinformatics, Databases, Genetics, Plant biology, C. elegans biology
Projects: Millar group, PlaSMo model repository, PHYTOCAL: Phytochrome Control of Resource Allocation and Growth in Arabidopsis and in Brassicaceae crops, Light and plant development, Light control of leaf development, Toggle switch, Reduce Complexity (RCO) reconstruction, Model Driven Prime Editing, PULSE 2.0, Plant optogenetics
Institutions: University of Edinburgh, Heinrich Heine University of Düsseldorf
https://orcid.org/0000-0002-7975-5013Projects: Light and plant development
Institutions: University of Edinburgh
How light control development
Programme: Modelling Light Control of Development
Public web page: Not specified
Start date: 1st Nov 2017
End date: 30th Nov 2021
Organisms: Arabidopsis thaliana