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Publications by Thilaga Velusamy
A Mutational Analysis of the Cytosolic Domain of the Tomato Cf-9 Disease-Resistance Protein Shows That Membrane-Proximal Residues Are Important for Avr9-Dependent Necrosis
Molecular Plant Pathology
Plant Science
Agronomy
Soil Science
Crop Science
Molecular Biology
Related publications
Rearrangements in the Cf-9 Disease Resistance Gene Cluster of Wild Tomato Have Resulted in Three Genes That Mediate Avr9 Responsiveness
Genetics
Genetics
Agroinfiltration Is a Versatile Tool That Facilitates Comparative Analyses of Avr9/Cf-9-Induced and Avr4/Cf-4-Induced Necrosis
Molecular Plant-Microbe Interactions
Medicine
Agronomy
Crop Science
Physiology
No Evidence for Binding Between Resistance Gene Product Cf-9 of Tomato and Avirulence Gene Product AVR9 ofCladosporium Fulvum
Molecular Plant-Microbe Interactions
Medicine
Agronomy
Crop Science
Physiology
Characterization of the Tomato Cf-4 Gene for Resistance to Cladosporium Fulvum Identifies Sequences That Determine Recognitional Specificity in Cf-4 and Cf-9
Plant Cell
Plant Science
Cell Biology
Identification of Distinct Specificity Determinants in Resistance Protein Cf-4 Allows Construction of a Cf-9 Mutant That Confers Recognition of Avirulence Protein AVR4
Plant Cell
Plant Science
Cell Biology
Rapid Avr9- And Cf-9-Dependent Activation of MAP Kinases in Tobacco Cell Cultures and Leaves: Convergence of Resistance Gene, Elicitor, Wound, and Salicylate Responses
Plant Cell
Plant Science
Cell Biology
Identification and Mutational Analysis ofArabidopsisFLS2 Leucine-Rich Repeat Domain Residues That Contribute to Flagellin Perception
Plant Cell
Plant Science
Cell Biology
Mutational Analysis of the Proposed Gibbon Ape Leukemia Virus Binding Site in Pit1 Suggests That Other Regions Are Important for Infection.
Journal of Virology
Insect Science
Immunology
Microbiology
Virology
Mutational Analysis of the Rotavirus NSP4 Enterotoxic Domain That Binds to Caveolin-1
Virology Journal
Virology
Infectious Diseases