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Two LysM receptor molecules, CEBiP and OsCERK1, cooperatively regulate chitin elicitor signaling in rice

The Plant Journal · 2010 · Vol. 64(2) · pp. 204–214
Takeo ShimizuTakuto NakanoDaisuke TakamizawaYoshitake DesakiNaoko Ishii-MinamiYoko NishizawaEiichi MinamiKazunori OkadaHisakazu YamaneHanae KakuNaoto Shibuya

Abstract

Chitin is a major molecular pattern for various fungi, and its fragments, chitin oligosaccharides, are known to induce various defense responses in plant cells. A plasma membrane glycoprotein, CEBiP (chitin elicitor binding protein) and a receptor kinase, CERK1 (chitin elicitor receptor kinase) (also known as LysM-RLK1), were identified as critical components for chitin signaling in rice and Arabidopsis, respectively. However, it is not known whether each plant species requires both of these two types of molecules for chitin signaling, nor the relationships between these molecules in membrane signaling. We report here that rice cells require a LysM receptor-like kinase, OsCERK1, in addition to CEBiP, for chitin signaling. Knockdown of OsCERK1 resulted in marked suppression of the defense responses induced by chitin oligosaccharides, indicating that OsCERK1 is essential for chitin signaling in rice. The results of a yeast two-hybrid assay indicated that both CEBiP and OsCERK1 have the potential to form hetero- or homo-oligomers. Immunoprecipitation using a membrane preparation from rice cells treated with chitin oligosaccharides suggested the ligand-induced formation of a receptor complex containing both CEBiP and OsCERK1. Blue native PAGE and chemical cross-linking experiments also suggested that a major portion of CEBiP exists as homo-oligomers even in the absence of chitin oligosaccharides.

Plant-Microbe Interactions and ImmunityLegume Nitrogen Fixing SymbiosisNematode management and characterization studiesElicitorChitinBiologyBiochemistrySignal transductionCell biologyArabidopsisReceptorImmunoprecipitationEnzyme

MeSH terms

Amino Acid SequenceChitinMolecular Sequence DataPlant ProteinsOryzaSignal TransductionProtein Serine-Threonine KinasesTwo-Hybrid System TechniquesAmino Acid MotifsProtein MultimerizationGene Knockdown Techniques

Funding

  • Shimane University
  • Directorate for Biological Sciences
Citations
704
FWCI
47.60
field-weighted impact
References
35
Percentile
100%
vs. same field & year
Citations per year
References
Blue native PAGE
Nature Protocols · 2006 · 1,704 citations
The plant immune system
Nature · 2006 · 12,881 citations
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