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Frontiers in Plant Science
|
February 9, 2019
Developing a High-Throughput SNP-Based Marker System to Facilitate the Introgression of Traits From <i>Aegilops</i> Species Into Bread Wheat (<i>Triticum aestivum</i>)
Alexandra M Przewieslik-Allen, Amanda J Burridge, Paul A Wilkinson, et al.
The New Phytologist
|
April 8, 2024
FIGL1 prevents aberrant chromosome associations and fragmentation and limits crossovers in polyploid wheat meiosis
Kim Osman, Stuart D Desjardins, James Simmonds, et al.
Nature Communications
|
June 25, 2022
FANCM promotes class I interfering crossovers and suppresses class II non-interfering crossovers in wheat meiosis
Stuart D Desjardins, James Simmonds, Inna Guterman, et al.
Plant Biotechnology Journal
|
March 23, 2024
Development of a next generation SNP genotyping array for wheat
Amanda J Burridge, Mark Winfield, Alexandra Przewieslik-Allen, et al.
Food Chemistry
|
May 14, 2023
Comparative compositions of grain of tritordeum, durum wheat and bread wheat grown in multi-environment trials
Peter R Shewry, Fred Brouns, Jack Dunn, et al.
Foods (Basel, Switzerland)
|
February 25, 2023
Comparative Compositions of Grain of Bread Wheat, Emmer and Spelt Grown with Different Levels of Nitrogen Fertilisation
Alison Lovegrove, Jack Dunn, Till K Pellny, et al.
Nature Plants
|
February 2, 2021
The role of gene flow and chromosomal instability in shaping the bread wheat genome
Alexandra M Przewieslik-Allen, Paul A Wilkinson, Amanda J Burridge, et al.
Plant Biotechnology Journal
|
October 16, 2015
High-density SNP genotyping array for hexaploid wheat and its secondary and tertiary gene pool
Mark O Winfield, Alexandra M Allen, Amanda J Burridge, et al.
Plant Biotechnology Journal
|
September 15, 2016
Characterization of a Wheat Breeders' Array suitable for high-throughput SNP genotyping of global accessions of hexaploid bread wheat (Triticum aestivum)
Alexandra M Allen, Mark O Winfield, Amanda J Burridge, et al.
Page
of 17
Search research articles
Search
Showing results (161-170 of 169) with videos related to
Sort By:
Page
of 17
You have reached the last page of results.
This site can display upto 169 results.
Frontiers in Plant Science
|
February 9, 2019
Developing a High-Throughput SNP-Based Marker System to Facilitate the Introgression of Traits From <i>Aegilops</i> Species Into Bread Wheat (<i>Triticum aestivum</i>)
Alexandra M Przewieslik-Allen, Amanda J Burridge, Paul A Wilkinson, et al.
The New Phytologist
|
April 8, 2024
FIGL1 prevents aberrant chromosome associations and fragmentation and limits crossovers in polyploid wheat meiosis
Kim Osman, Stuart D Desjardins, James Simmonds, et al.
Nature Communications
|
June 25, 2022
FANCM promotes class I interfering crossovers and suppresses class II non-interfering crossovers in wheat meiosis
Stuart D Desjardins, James Simmonds, Inna Guterman, et al.
Plant Biotechnology Journal
|
March 23, 2024
Development of a next generation SNP genotyping array for wheat
Amanda J Burridge, Mark Winfield, Alexandra Przewieslik-Allen, et al.
Food Chemistry
|
May 14, 2023
Comparative compositions of grain of tritordeum, durum wheat and bread wheat grown in multi-environment trials
Peter R Shewry, Fred Brouns, Jack Dunn, et al.
Foods (Basel, Switzerland)
|
February 25, 2023
Comparative Compositions of Grain of Bread Wheat, Emmer and Spelt Grown with Different Levels of Nitrogen Fertilisation
Alison Lovegrove, Jack Dunn, Till K Pellny, et al.
Nature Plants
|
February 2, 2021
The role of gene flow and chromosomal instability in shaping the bread wheat genome
Alexandra M Przewieslik-Allen, Paul A Wilkinson, Amanda J Burridge, et al.
Plant Biotechnology Journal
|
October 16, 2015
High-density SNP genotyping array for hexaploid wheat and its secondary and tertiary gene pool
Mark O Winfield, Alexandra M Allen, Amanda J Burridge, et al.
Plant Biotechnology Journal
|
September 15, 2016
Characterization of a Wheat Breeders' Array suitable for high-throughput SNP genotyping of global accessions of hexaploid bread wheat (Triticum aestivum)
Alexandra M Allen, Mark O Winfield, Amanda J Burridge, et al.
Page
of 17