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Excel spreadsheet with data and simulations used to prepare figures for publication, see Metadata sheet for conditions. Data Fresh (not dry) rosette leaf biomass, measured in samples of 5 plants each on multiple days, as mean and SD; Simulation outputs from FMv2 for Col Wild Type plants, and two simulations for prr7prr9 where the mutation affects only starch degradation or both starch degradation and malate/fumarate store mobilisation.
Starch levels in carbon units (not C6) measured on on days ...
Creators: Daniel Seaton, Yin Hoon Chew, Virginie Mengin
Submitter: Andrew Millar
Excel workbook with included Read.Me sheet, including FW and DW biomass data derived from files linked elsewhere; a compilation of the rosette area and gas exchange data for every plant measured of the Col, lsf1 and prr7prr9 genotypes; statistical analysis across the experiments; and charts of the compiled data, some of which are presented as figure panels in the 2022 versions.
Creators: Yin Hoon Chew, Andrew Millar
Submitter: Andrew Millar
Biomass data for individual plants at day 35, fresh and dry weights, as well as mean and SD, from study Gibberellins 1
Creators: Yin Hoon Chew, Andrew Millar
Submitter: Andrew Millar
Excel sheet with mean and SD biomass data and charts, individual metabolite replicates, mean, SD and charts Details on Read.ME worksheet
Creators: Virginie Mengin, Yin Hoon Chew, Andrew Millar
Submitter: Andrew Millar
Excel file with data on levels of thiamine and its metabolites TMP and active cofactor TDP, tested in Col and prr7prr9 samples from study Laurel and Hardy 3. Altered levels of TDP could potentially affect enzymes with TDP cofactors that metabolise malate and fumarate levels, altering their levels in prr7prr9.
Creators: Yin Hoon Chew, Michael Moulin, Teresa Fitzpatrick
Submitter: Andrew Millar
Excel spreadsheets for biomass, leaf number, gas exchange and metabolites, including pgm and lhycca1. Key data are for 27-28 day old plants for Col and prr7prr9, analysed for the preprint/publication. Gas exchange data for lhycca1 showed lower Assimilation per unit area than Col, prr7prr9; A in pgm was higher than Col. Metabolite data were also collected for Col and lhycca1 at 18 days, before the lhycca1 flowered, but these are marked as unreliable.
Creators: Yin Hoon Chew, Virginie Mengin, Daniel Seaton
Submitter: Daniel Seaton
Excel spreadsheet with data and simulations used to prepare figures for publication, see Metadata sheet for conditions. Data Fresh (not dry) rosette leaf biomass, measured in samples of 5 plants each on multiple days, as mean and SD; Simulation outputs from FMv2 for Col Wild Type plants, lsf1, and two simulations for prr7prr9 where the mutation affects only starch degradation or both starch degradation and malate/fumarate store mobilisation.
Starch levels in carbon units (not C6) measured on on ...
Creators: Yin Hoon Chew, Daniel Seaton, Virginie Mengin
Submitter: Andrew Millar
Complete excel spradsheets for Laurel and Hardy 2, including data for the pgm mutant that were not analysed in the Chew et al. 2017 preprint/publication. Data include fresh and dry biomass, gas exchange, leaf numbers and metabolites in Col0 (WT), prr7prr9, pgm and lsf1 plants. Metabolite data are from plants after 27 days of growth (end of night) and 28 days (end of day and end of night).
Creators: Yin Hoon Chew, Virginie Mengin, Daniel Seaton
Submitter: Daniel Seaton
Excel spreadsheet with data and simulations used to prepare figures for publication, see Metadata sheet for conditions. Data Fresh (not dry) rosette leaf biomass, measured in samples of 5 plants each on multiple days, as mean and SD; Simulation outputs from FMv2 for Col Wild Type plants, lsf1, and two simulations for prr7prr9 where the mutation affects only starch degradation or both starch degradation and malate/fumarate store mobilisation.
Starch levels in carbon units (not C6) measured on on ...
Creators: Daniel Seaton, Yin Hoon Chew, Virginie Mengin
Submitter: Andrew Millar
Data file for PLaSMo accesssion ID PLM_74, version 1
Creators: BioData SynthSys, Yin Hoon Chew, Yin Hoon
Submitter: BioData SynthSys
Data file for PLaSMo accesssion ID PLM_74, version 1
Creators: BioData SynthSys, Yin Hoon Chew, Yin Hoon
Submitter: BioData SynthSys
Data file for PLaSMo accesssion ID PLM_74, version 1
Creators: BioData SynthSys, Yin Hoon Chew, Yin Hoon
Submitter: BioData SynthSys
Data file for PLaSMo accesssion ID PLM_75, version 1
Creators: BioData SynthSys, Yin Hoon Chew, Yin Hoon
Submitter: BioData SynthSys
Data file for PLaSMo accesssion ID PLM_76, version 1
Creators: BioData SynthSys, Yin Hoon Chew, Yin Hoon
Submitter: BioData SynthSys
Data file for PLaSMo accesssion ID PLM_76, version 1
Creators: BioData SynthSys, Yin Hoon Chew, Yin Hoon
Submitter: BioData SynthSys
Data file for PLaSMo accesssion ID PLM_73, version 1
Creators: BioData SynthSys, Yin Hoon Chew, Yin Hoon
Submitter: BioData SynthSys
Data for Figs. 2I, 2J, 2K in Chew et al. PNAS 2014 Fresh biomass, dry biomass (i.e. after baking out all water), SLA - specific leaf area (area per g)
The same data are available on the BioDare resource, with additional experimental meta data on growth conditions. BioDare ID 13790828881028, title "Physiology experiment using Col", the direct link is: https://www.biodare.ed.ac.uk/robust/ShowExperiment.action?experimentId=13790828881028
Creators: Yin Hoon Chew, Benedicte Wenden
Submitter: Andrew Millar
Data for Figs. 3D, 3E in Chew et al. PNAS 2014 Fresh biomass, dry biomass (i.e. after baking out all water), SLA - specific leaf area (area per g) Also FMv1 model simulation results.
The same data are available on the BioDare resource, with additional experimental meta data on growth conditions. BioDare ID 13790837647786, title "Physiology experiment using Fei", the direct link is: https://www.biodare.ed.ac.uk/robust/ShowExperiment.action?experimentId=13790837647786
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Data for Figs. 3A, 3B in Chew et al. PNAS 2014 Fresh biomass, dry biomass (i.e. after baking out all water), SLA - specific leaf area (area per g)
Also contains model simulation data from the FMv1 The same data are available, with additional experimental meta data on growth conditions, from the BioDare resource: BioDare experiment 13790834110003; title "Physiology experiment using Ler", the direct link is: https://www.biodare.ed.ac.uk/robust/ShowExperiment.action?experimentId=13790834110003
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Intact rosette is pictured, with plant number and genotype in handwritten labels, and ruler for scale. Then dissected leaves are organised in sequence of age, if necessary with small cuts to let them lie flat. Areas are then measured in image processing.
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Data for Figs 3C, 3F and Supp 2 in Chew et al. PNAS 2014 Leaf number of the growing rosettes, from 4 to 37 days after sowing (DAS). Data and also results of FMv1 model simulations. Note that Fei-0 was previously tested by Mendez-Vigo et al, suggesting this line had a higher leaf appearance rate. We suggested that its larger final leaf number was more likely due to faster germination.
Creator: Yin Hoon Chew
Submitter: Andrew Millar
binary data file from "Hobo" environment multi-sensor + data logger, located next to the plants used in the experiment. Usually read in HOBOware software, free from Onsetcomp.com. Useful temperature record. Though light levels can usefully show changes they are not well calibrated.
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Fig 5D
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Figure 5D
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Data for Fig. Supp 7B in Chew et al. PNAS 2014 Leaf number of the growing rosettes, from 5 to 37 days after sowing. Data and also results of three FMv1 model simulations, with default, fitted and linear (i.e. no juvenile-adult transition in phyllochron)
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Data for Figs. 5D, 5E and Supp 7C in Chew et al. PNAS 2014 FW - fresh weight DW - dry weight (i.e. after baking out all water) SLA - specific leaf area (area per g mass), indicates leaf thickness Indiv, data for individual leaves rather than rosette
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Experiment conducted in early April 2014 Intact rosette is pictured, with plant number and genotype in handwritten labels, and ruler for scale. Then dissected leaves are organised in sequence of age, if necessary with small cuts to let them lie flat.
Areas are then measured in image processing.
Creator: Yin Hoon Chew
Submitter: Andrew Millar
Supplementary information file from Chew et al. PNAS 2014, including full model description for Arabidopsis Framework Model v1, model simulations and experimental validations.
Creators: Andrew Millar, Yin Hoon Chew
Submitter: Andrew Millar