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Journal of Experimental Botany|August 18, 2021
MAMP and DAMP signaling contributes resistance to Fusarium graminearum in ArabidopsisNimrat Manes, Elizabeth K Brauer, Shelley Hepworth, et al.
Fungal Biology|April 10, 2012
The feruloyl esterase gene family of Fusarium graminearum is differentially regulated by aromatic compounds and hostsMargaret Balcerzak, Linda J Harris, Rajagopal Subramaniam, et al.
Virulence|December 17, 2014
Proteomics of effector-triggered immunity (ETI) in plantsBrenden Hurley, Rajagopal Subramaniam, David S Guttman, et al.
Fungal Genetics and Biology : FG & B|October 13, 2019
Two 14-3-3 proteins contribute to nitrogen sensing through the TOR and glutamine synthetase-dependent pathways in Fusarium graminearumElizabeth K Brauer, Nimrat Manes, Christopher Bonner, et al.
Biochemical and Biophysical Research Communications|May 30, 2007
The GLK1 'regulon' encodes disease defense related proteins and confers resistance to Fusarium graminearum in ArabidopsisLeonid V Savitch, Rajagopal Subramaniam, Ghislaine C Allard, et al.
Proteomics|November 10, 2009
The phosphoproteome of Fusarium graminearum at the onset of nitrogen starvationChristof Rampitsch, Rajagopal Subramaniam, Slavica Djuric-Ciganovic, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 6, 2010
The type III effector HopF2Pto targets Arabidopsis RIN4 protein to promote Pseudomonas syringae virulenceMike Wilton, Rajagopal Subramaniam, James Elmore, et al.
Scientific Reports|June 17, 2018
In planta proximity dependent biotin identification (BioID)Madiha Khan, Ji-Young Youn, Anne-Claude Gingras, et al.
Proteomics|April 24, 2012
Phosphoproteome profile of Fusarium graminearum grown in vitro under nonlimiting conditionsChristof Rampitsch, Nicholas A Tinker, Rajagopal Subramaniam, et al.
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