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Thomas Wicker

Showing results (101-110 of 139) with videos related to

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Genome Biology|August 18, 2018
Chromosome-scale comparative sequence analysis unravels molecular mechanisms of genome dynamics between two wheat cultivarsAnupriya Kaur Thind, Thomas Wicker, Thomas Müller, et al.
Nature Plants|March 12, 2021
Wheat Pm4 resistance to powdery mildew is controlled by alternative splice variants encoding chimeric proteinsJavier Sánchez-Martín, Victoria Widrig, Gerhard Herren, et al.
Nature Communications|February 12, 2021
A membrane-bound ankyrin repeat protein confers race-specific leaf rust disease resistance in wheatMarkus C Kolodziej, Jyoti Singla, Javier Sánchez-Martín, et al.
Nature Plants|March 3, 2023
Author Correction: Wheat Pm4 resistance to powdery mildew is controlled by alternative splice variants encoding chimeric proteinsJavier Sánchez-Martín, Victoria Widrig, Gerhard Herren, et al.
The Plant Cell|May 31, 2011
Frequent gene movement and pseudogene evolution is common to the large and complex genomes of wheat, barley, and their relativesThomas Wicker, Klaus F X Mayer, Heidrun Gundlach, et al.
Nature Genetics|January 12, 2016
Hybridization of powdery mildew strains gives rise to pathogens on novel agricultural crop speciesFabrizio Menardo, Coraline R Praz, Stefan Wyder, et al.
Communications Biology|August 12, 2023
Integration of genetic and genomics resources in einkorn wheat enables precision mapping of important traitsGautam Saripalli, Laxman Adhikari, Cameron Amos, et al.
Genome Biology|December 24, 2013
The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolutionDina Raats, Zeev Frenkel, Tamar Krugman, et al.
The Plant Cell|October 11, 2015
Multiple Avirulence Loci and Allele-Specific Effector Recognition Control the Pm3 Race-Specific Resistance of Wheat to Powdery MildewSalim Bourras, Kaitlin Elyse McNally, Roi Ben-David, et al.
Genome Biology|December 19, 2019
TRITEX: chromosome-scale sequence assembly of Triticeae genomes with open-source toolsCécile Monat, Sudharsan Padmarasu, Thomas Lux, et al.
Pageof 14

Showing results (101-110 of 139) with videos related to

Sort By:
Pageof 14
Genome Biology|August 18, 2018
Chromosome-scale comparative sequence analysis unravels molecular mechanisms of genome dynamics between two wheat cultivarsAnupriya Kaur Thind, Thomas Wicker, Thomas Müller, et al.
Nature Plants|March 12, 2021
Wheat Pm4 resistance to powdery mildew is controlled by alternative splice variants encoding chimeric proteinsJavier Sánchez-Martín, Victoria Widrig, Gerhard Herren, et al.
Nature Communications|February 12, 2021
A membrane-bound ankyrin repeat protein confers race-specific leaf rust disease resistance in wheatMarkus C Kolodziej, Jyoti Singla, Javier Sánchez-Martín, et al.
Nature Plants|March 3, 2023
Author Correction: Wheat Pm4 resistance to powdery mildew is controlled by alternative splice variants encoding chimeric proteinsJavier Sánchez-Martín, Victoria Widrig, Gerhard Herren, et al.
The Plant Cell|May 31, 2011
Frequent gene movement and pseudogene evolution is common to the large and complex genomes of wheat, barley, and their relativesThomas Wicker, Klaus F X Mayer, Heidrun Gundlach, et al.
Nature Genetics|January 12, 2016
Hybridization of powdery mildew strains gives rise to pathogens on novel agricultural crop speciesFabrizio Menardo, Coraline R Praz, Stefan Wyder, et al.
Communications Biology|August 12, 2023
Integration of genetic and genomics resources in einkorn wheat enables precision mapping of important traitsGautam Saripalli, Laxman Adhikari, Cameron Amos, et al.
Genome Biology|December 24, 2013
The physical map of wheat chromosome 1BS provides insights into its gene space organization and evolutionDina Raats, Zeev Frenkel, Tamar Krugman, et al.
The Plant Cell|October 11, 2015
Multiple Avirulence Loci and Allele-Specific Effector Recognition Control the Pm3 Race-Specific Resistance of Wheat to Powdery MildewSalim Bourras, Kaitlin Elyse McNally, Roi Ben-David, et al.
Genome Biology|December 19, 2019
TRITEX: chromosome-scale sequence assembly of Triticeae genomes with open-source toolsCécile Monat, Sudharsan Padmarasu, Thomas Lux, et al.
Pageof 14