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The New Phytologist|October 9, 2018
Towards take-all control: a C-21β oxidase required for acylation of triterpene defence compounds in oatAymeric Leveau, James Reed, Xue Qiao, et al.
Foods (Basel, Switzerland)|October 23, 2021
Genotype and Environment Affect the Grain Quality and Yield of Winter Oats (<i>Avena sativa</i> L.)Catherine J Howarth, Pilar M J Martinez-Martin, Alexander A Cowan, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 7, 2019
A noncanonical vacuolar sugar transferase required for biosynthesis of antimicrobial defense compounds in oatAnastasia Orme, Thomas Louveau, Michael J Stephenson, et al.
TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|August 15, 2016
High-density marker profiling confirms ancestral genomes of Avena species and identifies D-genome chromosomes of hexaploid oatHonghai Yan, Wubishet A Bekele, Charlene P Wight, et al.
BMC Biology|November 24, 2019
Genomic insights from the first chromosome-scale assemblies of oat (Avena spp.) diploid speciesPeter J Maughan, Rebekah Lee, Rachel Walstead, et al.
BMC Genomics|January 23, 2009
New DArT markers for oat provide enhanced map coverage and global germplasm characterizationNicholas A Tinker, Andrzej Kilian, Charlene P Wight, et al.
The Plant Genome|November 30, 2016
A Consensus Map in Cultivated Hexaploid Oat Reveals Conserved Grass Synteny with Substantial Subgenome RearrangementAshley S Chaffin, Yung-Fen Huang, Scott Smith, et al.
Nature Communications|May 8, 2021
Subtelomeric assembly of a multi-gene pathway for antimicrobial defense compounds in cerealsYan Li, Aymeric Leveau, Qiang Zhao, et al.
Nature Communications|October 30, 2025
Global genomic population structure of wild and cultivated oat reveals signatures of chromosome rearrangementsWubishet A Bekele, Raz Avni, Clayton L Birkett, et al.
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