Data from: Cheating and resistance to cheating in natural populations of the bacterium Pseudomonas fluorescens

Bruce JB, Cooper GA, Chabas H, West SA, Griffin AS

Date Published: August 15, 2017

DOI: https://doi.org/10.5061/dryad.36g6r

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Title Data - Figures 1a_c
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Description Growth of each isolate in iron-limited media. Growth of each isolate over 24hrs (∆ODA600), pyoverdine production over 24hrs (∆RFU), pyoverdine production per cell (RFU/ODA600). Site - sampling site of each isolate. Patch - patch of each isolate. Status - Designated as a pyoverdine producer or non-producer
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Title Data - Figure 1b
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Description Growth of pyoverdine non-producers in iron-limited and iron-replete media. Non-producer - non-producing isolate. OD (48hrs) - ∆OD of each replicate over 48hrs. Media - isolate was grown in iron-limited or iron-replete media
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Title Data - Figure 2a_2b_2c_3a_3b
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Description Cross Feeding assays and genetic distance between isolates. Each non-producer was grown in iron-limited media supplemented with the supernatant of each pyoverdine producer in the collection. Supernatant - indicates which pyoverdine producer provided the supplemented supernatant. Non-producer - the non-producer supplemented. Proximity - Whether the supernatant came from a producer from the same patch or from elsewhere in the population. Successful Use - whether the non-producers growth in iron-limited media was significantly increased by supplementing with the producers supernatant. Unsuccessful use - whether it was not. Average growth - the average growth increase/decrease provided by addition of supernatant relative to an unsupplemented control (n=6). Genetic distance - the genetic distance between the non-producer and the isolate providing the supernatant
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Title Data - Figure S2
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Description Level of pyoverdine in producer supernatant for cross-feeding experiments resulting in a significant growth increase (successful use) versus no significant growth increase (unsuccessful use) for non-producers. N=1656 cross-feeding assays.
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When using this data, please cite the original publication:

Bruce JB, Cooper GA, Chabas H, West SA, Griffin AS (2017) Cheating and resistance to cheating in natural populations of the bacterium Pseudomonas fluorescens. Evolution 71(10): 2484-2495. https://doi.org/10.1111/evo.13328

Additionally, please cite the Dryad data package:

Bruce JB, Cooper GA, Chabas H, West SA, Griffin AS (2017) Data from: Cheating and resistance to cheating in natural populations of the bacterium Pseudomonas fluorescens. Dryad Digital Repository. https://doi.org/10.5061/dryad.36g6r
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