Dataset: Bumble bee parasite strains vary in susceptibility to phytochemicals
<p>The two spreadsheets contain data on phytochemical concentrations in nectar and pollen of field samples.</p> <p>The zipped folder contains all of the data for the cell culture experiments testing the effects of phytochemicals on growth of Crithidia bombi.</p> <p>Each folder contains the results of one week's experiment<br /> The OD readings for each strain are in a separate .csv file within the folder</p> <p>In the csv files:<br /> The column "conc" refers to concentration of the phytochemical in ppm, <br /> except for caryophyllene, which is in ppb<br /> The columns "net0" through "net120" contain the net OD for each sample<br /> at the 6 timepoints, 0h (start of experiment) through 120h</p> <p>For the 3 compounds for which we modeled EC50 values<br /> (anabasine, eugenol, and thymol)<br /> the folder also contains </p> <p>(1) "(name of experiment).grofit.R" file<br /> R script to calculate growth integral for each sample</p> <p>(2) "mcmc_input.txt" file <br /> containing the calculated growth integrals </p> <p>(3) .jags file<br /> containing the specifications of the MCMC model</p> <p>(4) "fit-evan-model.R" file<br /> R script to calculate dose-response curves and EC50 values</p> <p>Note that for the calculation of integrals,<br /> the thymol grofit.R script omits samples in columns 2,3, and 4<br /> and<br /> the eugenol grofit.R script omits samples in columns 3 and 4</p> <p>Samples in these columns displayed poor growth, <br /> which we attributed to exposure to phytochemicals <br /> that volatilized from the neighboring control wells,<br /> which contained high concentrations of thymol and eugenol</p>
ShareScore
12/100
Overall dataset sharing score
Score breakdown
These five areas show where the dataset supports — or may limit — practical reuse.
- Stewardship
- 8
- Harmonization
- 4
- Access
- 0
- Reuse readiness
- 0
- Engagement
- 0