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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
Samuel V. Scarpino
†Network Science Institute, Department of Marine and Environmental Sciences, and Department of Physics, Northeastern University
João V. Rodrigues
‡Department of Chemistry and Chemical Biology, Harvard University
Daniel L. Hartl
§Department of Organismic and Evolutionary Biology, Harvard University
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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Posted November 16, 2018.
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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