Exploring plant immune signaling through the Arabidopsis and Pseudomonas syringae interaction
Explore this paper's citation graph
Summary
This thesis describes the results of experiments aimed at characterizing different aspects of the immune system in plants, through the investigation of the Arabidopsis thaliana and Pseudomonas syringae interaction, and explores the interactome of the protein NDR1.
- Published
- 2009-01-01
- Cited by
- 0
- References
- 90
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:81730425
References
- Arabidopsis thaliana floral dip transformation method.
- Chloroplast-generated reactive oxygen species are involved in hypersensitive response-like cell death mediated by a mitogen-activated protein kinase cascade.
- The mode of action of cell wall-degrading enzymes and their interference with Nod factor signalling in Medicago sativa root hairs
- Hypersensitive response-related death
- Overexpression of CRK13, an Arabidopsis cysteine-rich receptor-like kinase, results in enhanced resistance to Pseudomonas syringae.
- NDR1, a pathogen-induced component required for Arabidopsis disease resistance.
- Innate immunity in Arabidopsis thaliana: lipopolysaccharides activate nitric oxide synthase (NOS) and induce defense genes.
- Invited review: Priming, induction and modulation of plant defence responses by bacterial lipopolysaccharides
- Hydrogen peroxide is generated systemically in plant leaves by wounding and systemin via the octadecanoid pathway.
- Two Pseudomonas syringae type III effectors inhibit RIN4-regulated basal defense in Arabidopsis.
- Microbe-associated molecular patterns (MAMPs) probe plant immunity.
- Elicitation and suppression of microbe‐associated molecular pattern‐triggered immunity in plant–microbe interactions
- The role of plant cell wall polysaccharide composition in disease resistance.
- The C2 domain protein BAP1 negatively regulates defense responses in Arabidopsis.
- Co-immunoprecipitations revisited: an update on experimental concepts and their implementation for sensitive interactome investigations of endogenous proteins
- Suppression of the microRNA pathway by bacterial effector proteins
- Use of Dominant-negative HrpA Mutants to Dissect Hrp Pilus Assembly and Type III Secretion in Pseudomonas syringae pv. tomato*
- A Central Role of Salicylic Acid in Plant Disease Resistance
- A Bacterial Effector Acts as a Plant Transcription Factor and Induces a Cell Size Regulator
- Monitoring the Switch from Housekeeping to Pathogen Defense Metabolism in Arabidopsis thaliana Using cDNA Arrays*
Cited by
No citing papers recorded for this paper.
Related papers
No related papers recorded.