Elicitation and suppression of microbe‐associated molecular pattern‐triggered immunity in plant–microbe interactions
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Summary
This review covers the latest findings in the dynamics of MAMP‐triggered immunity and its interception by virulence factors of pathogenic bacteria.
- Type
- review
- Published
- 2007-06-01
- Cited by
- 189
- References
- 110
- Access
- Open access
- OpenAlex
- https://openalex.org/W1969936614
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:603786
Keywords
Biology, Effector, Virulence, Innate immune system, Immunity
References
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- MAPK cascades in plant defense signaling.
- Subterfuge and manipulation: type III effector proteins of phytopathogenic bacteria.
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- Expansion of the Receptor-Like Kinase/Pelle Gene Family and Receptor-Like Proteins in Arabidopsis1[w]
- Early events in the pathogenicity of Pseudomonas syringae on Nicotiana benthamiana.
- The Pseudomonas syringae type III effector AvrRpt2 promotes virulence independently of RIN4, a predicted virulence target in Arabidopsis thaliana.
- Innate immunity in Arabidopsis thaliana: lipopolysaccharides activate nitric oxide synthase (NOS) and induce defense genes.
- Plants have a sensitive perception system for the most conserved domain of bacterial flagellin.
- Initiation of RPS2-specified disease resistance in Arabidopsis is coupled to the AvrRpt2-directed elimination of RIN4.
- Two Pseudomonas syringae type III effectors inhibit RIN4-regulated basal defense in Arabidopsis.
- A novel class of eukaryotic zinc-binding proteins is required for disease resistance signaling in barley and development in C. elegans.
- A receptor kinase gene of the LysM type is involved in legumeperception of rhizobial signals
- Cytosolic HSP90 associates with and modulates the Arabidopsis RPM1 disease resistance protein
- Activation of a mitogen-activated protein kinase pathway in Arabidopsis by chitin.
- Two distinct Pseudomonas effector proteins interact with the Pto kinase and activate plant immunity.
- A Bacterial Virulence Protein Suppresses Host Innate Immunity to Cause Plant Disease
- Plants and animals: a different taste for microbes?
- RAR1, a central player in plant immunity, is targeted by Pseudomonas syringae effector AvrB
- Cytoplasmic flagellin activates caspase-1 and secretion of interleukin 1β via Ipaf
Cited by
- A plant growth-promoting pseudomonad is closely related to the Pseudomonas syringae complex of plant pathogens.
- Unmasking host and microbial strategies in the Agrobacterium-plant defense tango
- Exploring plant immune signaling through the Arabidopsis and Pseudomonas syringae interaction
- Biological elicitors of plant secondary metabolites: mode of action and use in the production of nutraceutics.
- Nonself perception in plant innate immunity.
- Cell Death and Defence Gene Responses in Plant-Fungal Interactions
- The defence response of Arabidopsis thaliana roots against the fungal pathogen Fusarium oxysporum
- Bacterial growth in the plant apoplast is limited by nutrient availability
- Attack and defense in Xanthomonas-rice interactions.
- Capping protein integrates multiple MAMP signalling pathways to modulate actin dynamics during plant innate immunity
- Plant Signaling Peptides
- Self and Nonself
- Characterisation of potential regulators of PAMP-triggered immunity
- Environmental Impact of Using Phlebiopsis gigantea in Stump Treatment Against Heterobasidion annosum sensu lato and Screening Root Endophytes to Identify Other Novel Control Agents
- The effects of abiotic and biotic factors on somatic embryogenesis and seedlings of Pinus sylvestris (L.)
- Involvement of NtERF3 in the cell death signalling pathway mediated by SIPK/WIPK and WRKY1 in tobacco plants.
- Whole genome assembly, annotation and bioinformatics analysis of Bacillus amyloliquefaciens strain UCMB5113"
- Natural genetic variation of basal disease resistance in Arabidopsis
- Differentially expressed transcripts from cucumber (Cucumis sativus L.) root upon inoculation with Fusarium oxysporum f. sp. cucumerinum Owen
- PAMPs, MAMPs, DAMPs and others: an update on the diversity of plant immunity elicitors
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