An Axiom SNP genotyping array for Douglas-fir. Howe, G. T., Jayawickrama, K., Kolpak, S. E., Kling, J., Trappe, M., Hipkins, V., Ye, T., Guida, S., Cronn, R., Cushman, S. A., & McEvoy, S. BMC Genomics, 21(1):9, January, 2020.
Paper doi abstract bibtex In forest trees, genetic markers have been used to understand the genetic architecture of natural populations, identify quantitative trait loci, infer gene function, and enhance tree breeding. Recently, new, efficient technologies for genotyping thousands to millions of single nucleotide polymorphisms (SNPs) have finally made large-scale use of genetic markers widely available. These methods will be exceedingly valuable for improving tree breeding and understanding the ecological genetics of Douglas-fir, one of the most economically and ecologically important trees in the world.
@article{howe_axiom_2020,
title = {An {Axiom} {SNP} genotyping array for {Douglas}-fir},
volume = {21},
issn = {1471-2164},
url = {https://doi.org/10.1186/s12864-019-6383-9},
doi = {10.1186/s12864-019-6383-9},
abstract = {In forest trees, genetic markers have been used to understand the genetic architecture of natural populations, identify quantitative trait loci, infer gene function, and enhance tree breeding. Recently, new, efficient technologies for genotyping thousands to millions of single nucleotide polymorphisms (SNPs) have finally made large-scale use of genetic markers widely available. These methods will be exceedingly valuable for improving tree breeding and understanding the ecological genetics of Douglas-fir, one of the most economically and ecologically important trees in the world.},
language = {en},
number = {1},
urldate = {2026-01-16},
journal = {BMC Genomics},
author = {Howe, Glenn T. and Jayawickrama, Keith and Kolpak, Scott E. and Kling, Jennifer and Trappe, Matt and Hipkins, Valerie and Ye, Terrance and Guida, Stephanie and Cronn, Richard and Cushman, Samuel A. and McEvoy, Susan},
month = jan,
year = {2020},
pages = {9},
}
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