Sam Yeaman

Affiliations: 
2004-2015 University of British Columbia, Vancouver, Vancouver, BC, Canada 
 2015- University of Calgary, Calgary, Alberta, Canada 
Area:
Evolutionary theory, genetics of adaptation
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"Sam Yeaman"

Parents

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Michael C. Whitlock grad student 2004-2009 UBC
Laurent Lehmann post-doc 2010-2011 University of Neuchatel
Sally N. Aitken post-doc 2011-2015 UBC
Loren H. Rieseberg post-doc 2011-2015 UBC
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Publications

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Soudi S, Jahani M, Todesco M, et al. (2023) Repeatability of adaptation in sunflowers reveals that genomic regions harbouring inversions also drive adaptation in species lacking an inversion. Elife. 12
Booker TR, Yeaman S, Whiting JR, et al. (2023) The WZA: A window-based method for characterizing genotype-environment association. Molecular Ecology Resources
Booker TR, Yeaman S, Whitlock MC. (2022) Using genome scans to identify genes used repeatedly for adaptation. Evolution; International Journal of Organic Evolution
Li Q, Lindtke D, Rodríguez-Ramírez C, et al. (2022) Local adaptation and the evolution of genome architecture in threespine stickleback. Genome Biology and Evolution
Yeaman S. (2022) Evolution of polygenic traits under global vs local adaptation. Genetics. 220
Lind B, Lu M, Obreht Vidakovic D, et al. (2021) Haploid, diploid, and pooled exome capture recapitulate features of biology and paralogy in two non-model tree species. Molecular Ecology Resources
MacLachlan IR, McDonald TK, Lind BM, et al. (2021) Genome-wide shifts in climate-related variation underpin responses to selective breeding in a widespread conifer. Proceedings of the National Academy of Sciences of the United States of America. 118
Booker TR, Yeaman S, Whitlock MC. (2021) Global adaptation complicates the interpretation of genome scans for local adaptation. Evolution Letters. 5: 4-15
Lu M, Feau N, Obreht Vidakovic D, et al. (2020) Comparative Gene Expression Analysis Reveals Mechanism of Response to the Fungal Pathogen . Molecular Plant-Microbe Interactions : Mpmi
Todesco M, Owens GL, Bercovich N, et al. (2020) Massive haplotypes underlie ecotypic differentiation in sunflowers. Nature
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