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Louise F Thatcher

Showing results (21-30 of 34) with videos related to

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Journal of Experimental Botany|February 21, 2016
Characterization of a JAZ7 activation-tagged Arabidopsis mutant with increased susceptibility to the fungal pathogen Fusarium oxysporumLouise F Thatcher, Volkan Cevik, Murray Grant, et al.
Plant Physiology|February 18, 2017
Salicylic Acid-Dependent Plant Stress Signaling via Mitochondrial Succinate DehydrogenaseKatharina Belt, Shaobai Huang, Louise F Thatcher, et al.
Scientific Reports|December 18, 2020
A functional genomics approach to dissect spotted alfalfa aphid resistance in Medicago truncatulaSilke Jacques, Jana Sperschneider, Gagan Garg, et al.
Scientific Reports|September 9, 2018
The Arabidopsis RNA Polymerase II Carboxyl Terminal Domain (CTD) Phosphatase-Like1 (CPL1) is a biotic stress susceptibility geneLouise F Thatcher, Rhonda Foley, Hayley J Casarotto, et al.
Genome Biology and Evolution|May 22, 2015
Genome-Wide Analysis in Three Fusarium Pathogens Identifies Rapidly Evolving Chromosomes and Genes Associated with PathogenicityJana Sperschneider, Donald M Gardiner, Louise F Thatcher, et al.
Journal of Microbiological Methods|October 7, 2021
A method for high-throughput image-based antifungal screeningRosalie Sabburg, Aphrika Gregson, Andrew S Urquhart, et al.
Frontiers in Plant Science|December 27, 2016
Narrow-Leafed Lupin (<i>Lupinus angustifolius</i>) β1- and β6-Conglutin Proteins Exhibit Antifungal Activity, Protecting Plants against Necrotrophic Pathogen Induced Damage from <i>Sclerotinia sclerotiorum</i> and <i>Phytophthora nicotianae</i>Jose C Jimenez-Lopez, Su Melser, Kathleen DeBoer, et al.
The Plant Journal : for Cell and Molecular Biology|December 21, 2016
The tomato I gene for Fusarium wilt resistance encodes an atypical leucine-rich repeat receptor-like protein whose function is nevertheless dependent on SOBIR1 and SERK3/BAK1Ann-Maree Catanzariti, Huong T T Do, Pierrick Bru, et al.
Journal of Agricultural and Food Chemistry|October 23, 2024
Genomic and Untargeted Metabolomic Analysis of Secondary Metabolites in the <i>Streptomyces griseoaurantiacus</i> Strain MH191 Shows Media-Based Dependency for the Production of Bioactive Compounds with Potential Antifungal ActivityMargaret Ramarajan, Rosangela Devilla, Lachlan Dow, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 15, 2011
Mitochondrial complex II has a key role in mitochondrial-derived reactive oxygen species influence on plant stress gene regulation and defenseCynthia Gleason, Shaobai Huang, Louise F Thatcher, et al.
Pageof 4

Showing results (21-30 of 34) with videos related to

Sort By:
Pageof 4
Journal of Experimental Botany|February 21, 2016
Characterization of a JAZ7 activation-tagged Arabidopsis mutant with increased susceptibility to the fungal pathogen Fusarium oxysporumLouise F Thatcher, Volkan Cevik, Murray Grant, et al.
Plant Physiology|February 18, 2017
Salicylic Acid-Dependent Plant Stress Signaling via Mitochondrial Succinate DehydrogenaseKatharina Belt, Shaobai Huang, Louise F Thatcher, et al.
Scientific Reports|December 18, 2020
A functional genomics approach to dissect spotted alfalfa aphid resistance in Medicago truncatulaSilke Jacques, Jana Sperschneider, Gagan Garg, et al.
Scientific Reports|September 9, 2018
The Arabidopsis RNA Polymerase II Carboxyl Terminal Domain (CTD) Phosphatase-Like1 (CPL1) is a biotic stress susceptibility geneLouise F Thatcher, Rhonda Foley, Hayley J Casarotto, et al.
Genome Biology and Evolution|May 22, 2015
Genome-Wide Analysis in Three Fusarium Pathogens Identifies Rapidly Evolving Chromosomes and Genes Associated with PathogenicityJana Sperschneider, Donald M Gardiner, Louise F Thatcher, et al.
Journal of Microbiological Methods|October 7, 2021
A method for high-throughput image-based antifungal screeningRosalie Sabburg, Aphrika Gregson, Andrew S Urquhart, et al.
Frontiers in Plant Science|December 27, 2016
Narrow-Leafed Lupin (<i>Lupinus angustifolius</i>) β1- and β6-Conglutin Proteins Exhibit Antifungal Activity, Protecting Plants against Necrotrophic Pathogen Induced Damage from <i>Sclerotinia sclerotiorum</i> and <i>Phytophthora nicotianae</i>Jose C Jimenez-Lopez, Su Melser, Kathleen DeBoer, et al.
The Plant Journal : for Cell and Molecular Biology|December 21, 2016
The tomato I gene for Fusarium wilt resistance encodes an atypical leucine-rich repeat receptor-like protein whose function is nevertheless dependent on SOBIR1 and SERK3/BAK1Ann-Maree Catanzariti, Huong T T Do, Pierrick Bru, et al.
Journal of Agricultural and Food Chemistry|October 23, 2024
Genomic and Untargeted Metabolomic Analysis of Secondary Metabolites in the <i>Streptomyces griseoaurantiacus</i> Strain MH191 Shows Media-Based Dependency for the Production of Bioactive Compounds with Potential Antifungal ActivityMargaret Ramarajan, Rosangela Devilla, Lachlan Dow, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 15, 2011
Mitochondrial complex II has a key role in mitochondrial-derived reactive oxygen species influence on plant stress gene regulation and defenseCynthia Gleason, Shaobai Huang, Louise F Thatcher, et al.
Pageof 4