Literature DB >> 29083116

Non-branched β-1,3-glucan oligosaccharides trigger immune responses in Arabidopsis.

Hugo Mélida1, Sara Sopeña-Torres1, Laura Bacete1,2, María Garrido-Arandia1, Lucía Jordá1,2, Gemma López1, Antonio Muñoz-Barrios1,2, Luis F Pacios1,3, Antonio Molina1,2.   

Abstract

Fungal cell walls, which are essential for environmental adaptation and host colonization by the fungus, have been evolutionarily selected by plants and animals as a source of microbe-associated molecular patterns (MAMPs) that, upon recognition by host pattern recognition receptors (PRRs), trigger immune responses conferring disease resistance. Chito-oligosaccharides [β-1,4-N-acetylglucosamine oligomers, (GlcNAc)n ] are the only glycosidic structures from fungal walls that have been well-demonstrated to function as MAMPs in plants. Perception of (GlcNAc)4-8 by Arabidopsis involves CERK1, LYK4 and LYK5, three of the eight members of the LysM PRR family. We found that a glucan-enriched wall fraction from the pathogenic fungus Plectosphaerella cucumerina which was devoid of GlcNAc activated immune responses in Arabidopsis wild-type plants but not in the cerk1 mutant. Using this differential response, we identified the non-branched 1,3-β-d-(Glc) hexasaccharide as a major fungal MAMP. Recognition of 1,3-β-d-(Glc)6 was impaired in cerk1 but not in mutants defective in either each of the LysM PRR family members or in the PRR-co-receptor BAK1. Transcriptomic analyses of Arabidopsis plants treated with 1,3-β-d-(Glc)6 further demonstrated that this fungal MAMP triggers the expression of immunity-associated genes. In silico docking analyses with molecular mechanics and solvation energy calculations corroborated that CERK1 can bind 1,3-β-d-(Glc)6 at effective concentrations similar to those of (GlcNAc)4 . These data support that plants, like animals, have selected as MAMPs the linear 1,3-β-d-glucans present in the walls of fungi and oomycetes. Our data also suggest that CERK1 functions as an immune co-receptor for linear 1,3-β-d-glucans in a similar way to its proposed function in the recognition of fungal chito-oligosaccharides and bacterial peptidoglycan MAMPs.
© 2017 The Authors The Plant Journal © 2017 John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990CERKzzm321990; BAK1; cell wall; chitin; glucan; necrotrophic fungi; plant immunity

Mesh:

Substances:

Year:  2017        PMID: 29083116     DOI: 10.1111/tpj.13755

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  32 in total

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Authors:  Jizong Wang; Jijie Chai
Journal:  Plant Physiol       Date:  2020-02-11       Impact factor: 8.340

Review 2.  Surface Sensor Systems in Plant Immunity.

Authors:  Isabell Albert; Chenlei Hua; Thorsten Nürnberger; Rory N Pruitt; Lisha Zhang
Journal:  Plant Physiol       Date:  2019-12-10       Impact factor: 8.340

Review 3.  Cell wall integrity regulation across plant species.

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Journal:  Plant Mol Biol       Date:  2022-06-08       Impact factor: 4.335

4.  Proteomic identification and purification of seed proteins from native Amazonian species displaying antifungal activity.

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Journal:  Planta       Date:  2018-04-19       Impact factor: 4.116

5.  Cell wall-derived mixed-linked β-1,3/1,4-glucans trigger immune responses and disease resistance in plants.

Authors:  Diego Rebaque; Irene Del Hierro; Gemma López; Laura Bacete; Francisco Vilaplana; Pietro Dallabernardina; Fabian Pfrengle; Lucía Jordá; Andrea Sánchez-Vallet; Rosa Pérez; Frédéric Brunner; Antonio Molina; Hugo Mélida
Journal:  Plant J       Date:  2021-03-22       Impact factor: 6.417

Review 6.  Exploring the Role of Cell Wall-Related Genes and Polysaccharides during Plant Development.

Authors:  Matthew R Tucker; Haoyu Lou; Matthew K Aubert; Laura G Wilkinson; Alan Little; Kelly Houston; Sara C Pinto; Neil J Shirley
Journal:  Plants (Basel)       Date:  2018-05-31

Review 7.  Glycans as Modulators of Plant Defense Against Filamentous Pathogens.

Authors:  Chayanika Chaliha; Michael D Rugen; Robert A Field; Eeshan Kalita
Journal:  Front Plant Sci       Date:  2018-07-04       Impact factor: 5.753

Review 8.  Arabidopsis Transmembrane Receptor-Like Kinases (RLKs): A Bridge between Extracellular Signal and Intracellular Regulatory Machinery.

Authors:  Jismon Jose; Swathi Ghantasala; Swarup Roy Choudhury
Journal:  Int J Mol Sci       Date:  2020-06-03       Impact factor: 5.923

9.  Mixed Linkage β-1,3/1,4-Glucan Oligosaccharides Induce Defense Responses in Hordeum vulgare and Arabidopsis thaliana.

Authors:  Sina Barghahn; Gregory Arnal; Namrata Jain; Elena Petutschnig; Harry Brumer; Volker Lipka
Journal:  Front Plant Sci       Date:  2021-06-17       Impact factor: 5.753

10.  LYSMD3: A mammalian pattern recognition receptor for chitin.

Authors:  Xin He; Brad A Howard; Yang Liu; Aaron K Neumann; Liwu Li; Nidhi Menon; Tiffany Roach; Shiv D Kale; David C Samuels; Hongyan Li; Trenton Kite; Hirohito Kita; Tony Y Hu; Mengyao Luo; Caroline N Jones; Uju Joy Okaa; Diane L Squillace; Bruce S Klein; Christopher B Lawrence
Journal:  Cell Rep       Date:  2021-07-20       Impact factor: 9.995

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