Data from: Compensatory mutations improve general permissiveness to antibiotic resistance plasmids

Loftie-Eaton W, Bashford K, Quinn H, Dong K, Millstein J, Hunter S, Thomason MK, Merrikh H, Ponciano JM, Top EM

Date Published: September 28, 2017

DOI: https://doi.org/10.5061/dryad.v25vk

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Title ResultsSection2.1
Downloaded 4 times
Description This plasmid persistence dataset contains the number of plasmid-containing and plasmid-free cells sampled every 10 generations (24 h) over a 100 generation period for populations consisting of ancestral host (Hanc) and plasmid (Panc), evolved host (Hev) and plasmid (Pev), permutations HancPev and HevPanc, as well as control evolved hosts containing the ancestral plasmid (Hev*Panc).
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Title ResultsSection2.2
Downloaded 5 times
Description This competition assay dataset contains the number of plasmid-containing and plasmid-free cells sampled every 10 generations (24 h) over a 48 generation period for mixed populations consisting of plasmid-containing (ancestral host and plasmid or evolved host and plasmid) and their respective plasmid-free segregants (ancestral host or evolved host only, respectively).
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Title ResultsSection2.3
Downloaded 6 times
Description This plasmid persistence dataset contains the number of plasmid-containing and plasmid-free cells sampled every 10 generations (24 h) over a 100 generation period for populations consisting of ancestral or evolved hosts containing one of three alternative plasmids, pB10, Rsa and IncQ.
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Title ResultsSection2.4
Downloaded 5 times
Description This plasmid persistence dataset contains the number of plasmid-containing and plasmid-free cells sampled every 10 generations (24 h) over a 100 generation period for populations consisting of ancestral or evolved hosts with reconstructed mutant or ancestral helicase alleles.
Download ResultsSection2.4.csv (9.182 Kb)
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When using this data, please cite the original publication:

Loftie-Eaton W, Bashford K, Quinn H, Dong K, Millstein J, Hunter S, Thomason MK, Merrikh H, Ponciano JM, Top EM (2017) Compensatory mutations improve general permissiveness to antibiotic resistance plasmids. Nature Ecology & Evolution 1(9): 1354-1363. https://doi.org/10.1038/s41559-017-0243-2

Additionally, please cite the Dryad data package:

Loftie-Eaton W, Bashford K, Quinn H, Dong K, Millstein J, Hunter S, Thomason MK, Merrikh H, Ponciano JM, Top EM (2017) Data from: Compensatory mutations improve general permissiveness to antibiotic resistance plasmids. Dryad Digital Repository. https://doi.org/10.5061/dryad.v25vk
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