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Proteostasis environment shapes higher-order epistasis operating on antibiotic resistance

Rafael F. Guerrero, Samuel V. Scarpino, View ORCID ProfileJoão V. Rodrigues, Daniel L. Hartl, View ORCID ProfileC. Brandon Ogbunugafor
doi: https://doi.org/10.1101/470971
Rafael F. Guerrero
*Department of Computer Science, Indiana University
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Samuel V. Scarpino
†Network Science Institute, Department of Marine and Environmental Sciences, and Department of Physics, Northeastern University
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João V. Rodrigues
‡Department of Chemistry and Chemical Biology, Harvard University
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Daniel L. Hartl
§Department of Organismic and Evolutionary Biology, Harvard University
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C. Brandon Ogbunugafor
**Department Ecology and Evolutionary Biology, Brown University
††Department of Biology, University of Vermont
‡‡Vermont Complex Systems Center, University of Vermont
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  • ORCID record for C. Brandon Ogbunugafor
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Posted November 16, 2018.
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Proteostasis environment shapes higher-order epistasis operating on antibiotic resistance
Rafael F. Guerrero, Samuel V. Scarpino, João V. Rodrigues, Daniel L. Hartl, C. Brandon Ogbunugafor
bioRxiv 470971; doi: https://doi.org/10.1101/470971
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Proteostasis environment shapes higher-order epistasis operating on antibiotic resistance
Rafael F. Guerrero, Samuel V. Scarpino, João V. Rodrigues, Daniel L. Hartl, C. Brandon Ogbunugafor
bioRxiv 470971; doi: https://doi.org/10.1101/470971

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