Data from: A trade-off between oxidative stress resistance and DNA repair plays a role in the evolution of elevated mutation rates in bacteria

 

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Title Catalase activity
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Description Amplex® Red Catalase Assay fluorescence measures of catalase activity of supernatant of P. aeruginosa mutators and WT.
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Title Fitness mutators vs WT
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Description Competition experiments between P. aeruginosa PAO1 wild-type and mutators (GmR) in the presence and absence of hydrogen peroxide.
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Title H2O2 effect on cell density
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Description Viable cells of P. aeruginosa mutators and WT using BacTiter-Glo™ Reagent (Promega) after treatment with H2O2 relative to viable cells in H2O-treated
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Title Mutation rate with hydrogen peroxide
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Description Mutation rate of P. aeruginosa WT and mutators before treatment and after treatment with hydrogen peroxide washing and non washing the cells calculated with the MSS maximum likelihood method.
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When using this data, please cite the original publication:

Torres-Barceló C, Cabot G, Oliver A, Buckling A, MacLean RC (2013) A trade-off between oxidative stress resistance and DNA repair plays a role in the evolution of elevated mutation rates in bacteria. Proceedings of the Royal Society B 280(1757): 20130007. http://dx.doi.org/10.1098/rspb.2013.0007

Additionally, please cite the Dryad data package:

Torres-Barceló C, Cabot G, Oliver A, Buckling A, MacLean RC (2013) Data from: A trade-off between oxidative stress resistance and DNA repair plays a role in the evolution of elevated mutation rates in bacteria. Dryad Digital Repository. http://dx.doi.org/10.5061/dryad.jr4dc
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