Brook T. Moyers, Ph.D.

Affiliations: 
2019- Biology University of Massachusetts - Boston 
Area:
local adaptation, phenotypic plasticity, population genetics, quantitative genetics
Website:
http://moyerslab.science
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"Brook T. Moyers"

Parents

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Keith Karoly research assistant 2006-2007 Reed College
Johanna Schmitt research assistant 2007-2008 Brown
Loren H. Rieseberg grad student 2008-2014 UBC
John K. McKay post-doc 2015-2018 Colorado State
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Publications

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Hübner S, Bercovich N, Todesco M, et al. (2018) Sunflower pan-genome analysis shows that hybridization altered gene content and disease resistance. Nature Plants
Price N, Moyers BT, Lopez L, et al. (2018) Combining population genomics and fitness QTLs to identify the genetics of local adaptation in . Proceedings of the National Academy of Sciences of the United States of America
Monroe JG, Allen ZA, Tanger P, et al. (2017) TSPmap, a tool making use of traveling salesperson problem solvers in the efficient and accurate construction of high-density genetic linkage maps. Biodata Mining. 10: 38
Moyers BT, Morrell PL, McKay JK. (2017) Genetic costs of domestication and improvement. The Journal of Heredity
Moyers BT, Owens GL, Baute GJ, et al. (2017) The genetic architecture of UV floral patterning in sunflower. Annals of Botany
Tanger P, Klassen S, Mojica JP, et al. (2017) Field-based high throughput phenotyping rapidly identifies genomic regions controlling yield components in rice. Scientific Reports. 7: 42839
Todesco M, Pascual MA, Owens GL, et al. (2016) Hybridization and extinction. Evolutionary Applications. 9: 892-908
Moyers BT, Rieseberg LH. (2016) Remarkable life history polymorphism may be evolving under divergent selection in the silverleaf sunflower. Molecular Ecology
Renaut S, Grassa CJ, Yeaman S, et al. (2013) Genomic islands of divergence are not affected by geography of speciation in sunflowers. Nature Communications. 4: 1827
Fournier-Level A, Wilczek AM, Cooper MD, et al. (2013) Paths to selection on life history loci in different natural environments across the native range of Arabidopsis thaliana. Molecular Ecology. 22: 3552-66
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