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BMC Genomics
|
January 29, 2011
Model SNP development for complex genomes based on hexaploid oat using high-throughput 454 sequencing technology
Rebekah E Oliver, Gerard R Lazo, Joseph D Lutz, et al.
Nature
|
May 18, 2022
The mosaic oat genome gives insights into a uniquely healthy cereal crop
Nadia Kamal, Nikos Tsardakas Renhuldt, Johan Bentzer, et al.
The Plant Genome
|
November 30, 2016
A Consensus Map in Cultivated Hexaploid Oat Reveals Conserved Grass Synteny with Substantial Subgenome Rearrangement
Ashley S Chaffin, Yung-Fen Huang, Scott Smith, et al.
Nature
|
May 11, 2017
Corrigendum: The genome of Chenopodium quinoa
David E Jarvis, Yung Shwen Ho, Damien J Lightfoot, et al.
Nature
|
February 9, 2017
The genome of Chenopodium quinoa
David E Jarvis, Yung Shwen Ho, Damien J Lightfoot, et al.
Plos One
|
March 28, 2013
SNP discovery and chromosome anchoring provide the first physically-anchored hexaploid oat map and reveal synteny with model species
Rebekah E Oliver, Nicholas A Tinker, Gerard R Lazo, et al.
Nature Communications
|
October 30, 2025
Global genomic population structure of wild and cultivated oat reveals signatures of chromosome rearrangements
Wubishet A Bekele, Raz Avni, Clayton L Birkett, et al.
Nature
|
November 20, 2025
Author Correction: A pangenome and pantranscriptome of hexaploid oat
Raz Avni, Nadia Kamal, Lidija Bitz, et al.
Nature
|
October 30, 2025
A pangenome and pantranscriptome of hexaploid oat
Raz Avni, Nadia Kamal, Lidija Bitz, et al.
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Search research articles
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Showing results (31-40 of 39) with videos related to
Sort By:
Page
of 4
You have reached the last page of results.
This site can display upto 39 results.
BMC Genomics
|
January 29, 2011
Model SNP development for complex genomes based on hexaploid oat using high-throughput 454 sequencing technology
Rebekah E Oliver, Gerard R Lazo, Joseph D Lutz, et al.
Nature
|
May 18, 2022
The mosaic oat genome gives insights into a uniquely healthy cereal crop
Nadia Kamal, Nikos Tsardakas Renhuldt, Johan Bentzer, et al.
The Plant Genome
|
November 30, 2016
A Consensus Map in Cultivated Hexaploid Oat Reveals Conserved Grass Synteny with Substantial Subgenome Rearrangement
Ashley S Chaffin, Yung-Fen Huang, Scott Smith, et al.
Nature
|
May 11, 2017
Corrigendum: The genome of Chenopodium quinoa
David E Jarvis, Yung Shwen Ho, Damien J Lightfoot, et al.
Nature
|
February 9, 2017
The genome of Chenopodium quinoa
David E Jarvis, Yung Shwen Ho, Damien J Lightfoot, et al.
Plos One
|
March 28, 2013
SNP discovery and chromosome anchoring provide the first physically-anchored hexaploid oat map and reveal synteny with model species
Rebekah E Oliver, Nicholas A Tinker, Gerard R Lazo, et al.
Nature Communications
|
October 30, 2025
Global genomic population structure of wild and cultivated oat reveals signatures of chromosome rearrangements
Wubishet A Bekele, Raz Avni, Clayton L Birkett, et al.
Nature
|
November 20, 2025
Author Correction: A pangenome and pantranscriptome of hexaploid oat
Raz Avni, Nadia Kamal, Lidija Bitz, et al.
Nature
|
October 30, 2025
A pangenome and pantranscriptome of hexaploid oat
Raz Avni, Nadia Kamal, Lidija Bitz, et al.
Page
of 4