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Hormonal crosstalk in plant immunity
A. van der Does
Plant Microbe Interactions
Sub Plant-Microbe Interactions
Research output
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Thesis
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Doctoral thesis 1 (Research UU / Graduation UU)
Overview
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Keyphrases
Plant Immunity
100%
Salicylic Acid
100%
Hormonal Crosstalk
100%
Jasmonic Acid
66%
Jasmonic Acid Pathway
50%
Acid-responsive
27%
GCC Box
27%
Acid Activation
22%
Transcriptional Repressor
16%
Methyl Jasmonate (MeJA)
16%
Gene Expression
11%
Negative Effects
11%
Responsive Genes
11%
Antagonistic Effect
11%
Salicylic Acid Signaling
11%
ORA59
11%
Antagonistic Interactions
11%
ERF Transcription Factor
11%
Coronatine
11%
Mutational Analysis
5%
Signaling Pathway
5%
Attacker
5%
Binding Site
5%
Molecular Mechanism
5%
Arabidopsis
5%
Arabidopsis Thaliana
5%
Environmental Conditions
5%
Pseudomonas Syringae
5%
Crop Plants
5%
E3 Ubiquitin Ligase
5%
Developmental Stages
5%
Crop Protection
5%
Bacterial Pathogens
5%
Plethora
5%
Immune Signaling
5%
Insect Herbivory
5%
Jasmonic Acid Biosynthesis
5%
Defence against Pathogens
5%
Plant Hormones
5%
Aspirin
5%
Two-pathway
5%
Underrepresentation
5%
Sustainable Solutions
5%
Promoter Region
5%
Synergistic Interaction
5%
Plant Immune Signalling
5%
Proteasomal Degradation
5%
Plant Immune Responses
5%
Repression Domain
5%
Repressor Protein
5%
Insect Pathogen
5%
Necrotrophic Lifestyle
5%
Plant Health
5%
Plant Defense Genes
5%
ERF Genes
5%
Biotrophic
5%
Phytotoxins
5%
Encoding Gene
5%
Biochemistry, Genetics and Molecular Biology
Jasmonate
100%
Plant Immunity
100%
Infectious Agent
18%
Transcriptional Repressor
9%
Gene Expression
9%
Promoter Region
9%
Transcription Factors
9%
Solution and Solubility
4%
Plant Defense
4%
Transcription
4%
Anabolism
4%
Transcriptional Activator
4%
ERF (Gene)
4%
Repressor Protein
4%
Arabidopsis
4%
Binding Site
4%
Immunity
4%
Arabidopsis thaliana
4%
Pseudomonas syringae
4%
Developmental Stage
4%
Ubiquitin-Conjugating Enzyme
4%
Proteasome
4%
Pribnow Box
4%