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QTL mapping in field plant populations reveals a genetic basis for frequency- and spatially-specific fungal pathosystem resistance

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Baraniecka,  Patrycja
Department of Molecular Ecology, Prof. I. T. Baldwin, MPI for Chemical Ecology, Max Planck Society;

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Gase,  Klaus
Department of Molecular Ecology, Prof. I. T. Baldwin, MPI for Chemical Ecology, Max Planck Society;

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Pradhan,  Maitree
IMPRS on Ecological Interactions, MPI for Chemical Ecology, Max Planck Society;
Department of Molecular Ecology, Prof. I. T. Baldwin, MPI for Chemical Ecology, Max Planck Society;

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Baldwin,  Ian Thomas       
Department of Molecular Ecology, Prof. I. T. Baldwin, MPI for Chemical Ecology, Max Planck Society;

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McGale,  Erica
Department of Molecular Ecology, Prof. I. T. Baldwin, MPI for Chemical Ecology, Max Planck Society;

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Valim,  Henrique
Department of Molecular Ecology, Prof. I. T. Baldwin, MPI for Chemical Ecology, Max Planck Society;

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Citation

Baraniecka, P., Gase, K., Pradhan, M., Baldwin, I. T., McGale, E., & Valim, H. (2024). QTL mapping in field plant populations reveals a genetic basis for frequency- and spatially-specific fungal pathosystem resistance. bioRxiv: the preprint server for biology. doi:10.1101/2024.06.03.597112.


Cite as: https://hdl.handle.net/21.11116/0000-000F-67BD-9
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