Plant cells recognize chitin fragments for defense signaling through a plasma membrane receptor
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- 18 July 2006
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (29), 11086-11091
- https://doi.org/10.1073/pnas.0508882103
Abstract
Chitin is a major component of fungal cell walls and serves as a molecular pattern for the recognition of potential pathogens in the innate immune systems of both plants and animals. In plants, chitin oligosaccharides have been known to induce various defense responses in a wide range of plant cells including both monocots and dicots. To clarify the molecular machinery involved in the perception and transduction of chitin oligosaccharide elicitor, a high-affinity binding protein for this elicitor was isolated from the plasma membrane of suspension-cultured rice cells. Characterization of the purified protein, CEBiP, as well as the cloning of the corresponding gene revealed that CEBiP is actually a glycoprotein consisting of 328 amino acid residues and glycan chains. CEBiP was predicted to have a short membrane spanning domain at the C terminus. Knockdown of CEBiP gene by RNA interference resulted in the suppression of the elicitor-induced oxidative burst as well as the gene responses, showing that CEBiP plays a key role in the perception and transduction of chitin oligosaccharide elicitor in the rice cells. Structural analysis of CEBiP also indicated the presence of two LysM motifs in the extracellular portion of CEBiP. As the LysM motif has been known to exist in the putative Nod-factor receptor kinases involved in the symbiotic signaling between leguminous plants and rhizobial bacteria, the result indicates the involvement of partially homologous plasma membrane proteins both in defense and symbiotic signaling in plant cells.Keywords
This publication has 27 references indexed in Scilit:
- Elicitor-induced Activation of Phospholipases Plays an Important Role for the Induction of Defense Responses in Suspension-cultured Rice CellsPlant and Cell Physiology, 2005
- Receptor kinase signalling in plantsCanadian Journal of Botany, 2004
- A receptor kinase gene of the LysM type is involved in legumeperception of rhizobial signalsNature, 2003
- Plant recognition of symbiotic bacteria requires two LysM receptor-like kinasesNature, 2003
- Rice receptor for chitin oligosaccharide elicitor does not couple to heterotrimeric G‐protein: Elicitor responses of suspension cultured rice cells from Daikoku dwarf (d1) mutants lacking a functional G‐protein α‐subunitPhysiologia Plantarum, 2002
- Binding Site for Chitin Oligosaccharides in the Soybean Plasma MembranePlant Physiology, 2001
- Plant pathogens and integrated defence responses to infectionNature, 2001
- The Sex-Inducing Pheromone and Wounding Trigger the Same Set of Genes in the Multicellular Green Alga VolvoxPlant Cell, 1998
- Localization and Binding Characteristics of a High-Affinity Binding Site for N--Acetylchitooligosaccharide Elicitor in the Plasma Membrane from Suspension-Cultured Rice Cells Suggest a Role as a Receptor for the Elicitor Signal at the Cell SurfacePlant and Cell Physiology, 1996
- Modular design of the Enterococcus hirae muramidase-2 and Streptococcus faecalis autolysinFEMS Microbiology Letters, 1992