Flagellin perception: a paradigm for innate immunity.
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Summary
Genetic analysis in Arabidopsis has shown that FLS2, which encodes a receptor-like kinase, is essential for flagellin perception, and FLS 2 shares homology with the TLR family, and TLR5 is responsible for flagescence perception in mammals.
- Type
- review
- Published
- 2002-06-01
- Cited by
- 575
- References
- 61
- OpenAlex
- https://openalex.org/W1995286212
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:35866188
Keywords
Flagellin, TLR5, Biology, Innate immune system, Arabidopsis
References
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- The evolution and genetics of innate immunity
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- Toll-like receptors in the induction of the innate immune response
- Flagellin, a Novel Mediator of Salmonella-Induced Epithelial Activation and Systemic Inflammation: IκBα Degradation, Induction of Nitric Oxide Synthase, Induction of Proinflammatory Mediators, and Cardiovascular Dysfunction1
- Toll-like receptors: key mediators of microbe detection.
- Plant pathogens and integrated defence responses to infection
- Specific perception of subnanomolar concentrations of chitin fragments by tomato cells: induction of extracellular alkalinization, changes in protein phosphorylation, and establishment of a refractory state
Cited by
- Flagellin Is the Major Proinflammatory Determinant of Enteropathogenic Salmonella1
- The Pseudomonas syringae type III effector AvrRpt2 functions downstream or independently of SA to promote virulence on Arabidopsis thaliana.
- Subterfuge and manipulation: type III effector proteins of phytopathogenic bacteria.
- The oomycete response gene LURP1 is required for defense against Hyaloperonospora parasitica in Arabidopsis thaliana.
- Warriors at the gate that never sleep: non-host resistance in plants.
- How did flowering plants learn to avoid blind date mistakes? Self-incompatibility in plants and comparisons with nonself rejection in the immune response.
- Non-arginine-aspartate (non-RD) kinases are associated with innate immune receptors that recognize conserved microbial signatures.
- Stomatal patterning and development.
- Studies on biotic and abiotic elicitors inducing defense responses in tomato
- Exploring plant immune signaling through the Arabidopsis and Pseudomonas syringae interaction
- The interplay between a Phytophthora RXLR effector and an Arabidopsis lectin receptor kinase
- Transformation of tobacco with a lupin chitinase gene under control of a stress inducible promoter
- Characterisation of the anti-inflammatory effects of marine extracts
- Recognition of the Cladosporium fulvum Ecp2 elicitor in tomato and non-host plants
- Significance of photosynthesis and the photosynthesis related genes TMP14, FBPase and P700 in Russian wheat aphid resistant wheat
- Nonself perception in plant innate immunity.
- Interaction entre des mutants hrp d'Erwinia amylovora, agent du feu bactérien, le parent pathogène et la plante hôte : recherche de mécanismes modulant la compatibilité
- Identification of wheat leaf rust (Puccinia triticina. ERIKS.) genes expressed during the early stages of infection
- Phoma du tournesol : déterminisme de la tolérance de l'hôte à la maladie
- Genes, hormones and signalling pathways implicated in plant defence to Leptosphaeria maculans
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