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An epi-evolutionary model to predict spore-producing pathogens adaptation to quantitative resistance in heterogeneous environments

View ORCID ProfileRamsès Djidjou-Demasse, Jean-Baptiste Burie, Arnaud Ducrot, Sébastien Lion, Quentin Richard, View ORCID ProfileFrédéric Fabre
doi: https://doi.org/10.1101/423467
Ramsès Djidjou-Demasse
aUniv. Montpellier, MIVEGEC, IRD, CNRS, Montpellier F-34394, France
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  • ORCID record for Ramsès Djidjou-Demasse
  • For correspondence: ramses.djidjoudemasse@ird.fr
Jean-Baptiste Burie
dUniv. Bordeaux, IMB, UMR 5251, Talence F-33400, France
eCNRS, IMB, UMR 5251, Talence F-33400, France
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Arnaud Ducrot
cUniv. Normandie, UNIHAVRE, LMAH, FR-CNRS-3335, ISCN, 76600 Le Havre, France
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Sébastien Lion
bCEFE, CNRS, Univ. Montpellier, Univ. Montpellier 3 Paul-Valéry, EPHE, IRD, Montpellier F-34293, France
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Quentin Richard
aUniv. Montpellier, MIVEGEC, IRD, CNRS, Montpellier F-34394, France
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Frédéric Fabre
fINRAE, Bordeaux Sciences Agro, UMR SAVE, Villenave d’Ornon F-33882, France
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  • ORCID record for Frédéric Fabre
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Posted September 16, 2020.
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An epi-evolutionary model to predict spore-producing pathogens adaptation to quantitative resistance in heterogeneous environments
Ramsès Djidjou-Demasse, Jean-Baptiste Burie, Arnaud Ducrot, Sébastien Lion, Quentin Richard, Frédéric Fabre
bioRxiv 423467; doi: https://doi.org/10.1101/423467
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An epi-evolutionary model to predict spore-producing pathogens adaptation to quantitative resistance in heterogeneous environments
Ramsès Djidjou-Demasse, Jean-Baptiste Burie, Arnaud Ducrot, Sébastien Lion, Quentin Richard, Frédéric Fabre
bioRxiv 423467; doi: https://doi.org/10.1101/423467

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