Literature DB >> 21733976

Distinct carbohydrate and lipid-based molecular patterns within lipopolysaccharides from Burkholderia cepacia contribute to defense-associated differential gene expression in Arabidopsis thaliana.

Ntakadzeni E Madala1, Antonio Molinaro, Ian A Dubery.   

Abstract

Lipopolysaccharides are structural components within the cell walls of Gram-negative bacteria. The LPSs as microbe-associated molecular pattern (MAMP) molecules can trigger defense-related responses involved in MAMP-triggered immunity and basal resistance in plants, presumably from an initial perception event. LPS from Burkholderia cepacia as well as two fragments, the glycolipid, lipid A and the polysaccharide (OPS-core) chain, were used to treat Arabidopsis thaliana seedlings to evaluate the eliciting activities of the individual LPS sub-domains by means of Annealing Control Primer-based Differential Display transcript profiling. Genes found to be up-regulated encode for proteins involved in signal perception and transduction, transcriptional regulation and defense - and stress responses. Furthermore, genes encoding proteins involved in chaperoning, secretion, protein-protein interactions and protein degradation were differentially expressed. It is concluded that intact LPS, as well as the two sub-components, induced the expression of a broad range of genes associated with perception and defense as well as metabolic reprogramming of cellular activities in support of immunity and basal resistance. Whilst the lipid A and OPS moieties were able to up-regulate sub-sets of defense-associated genes over the same spectrum of categories as intact LPS, the up-regulation observed with intact LPS was the more comprehensive, suggesting that the lipid A and glycan molecular patterns of the molecule act as partial agonists, but that the intact LPS structure is required for full agonist activity.

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Year:  2011        PMID: 21733976     DOI: 10.1177/1753425910392609

Source DB:  PubMed          Journal:  Innate Immun        ISSN: 1753-4259            Impact factor:   2.680


  21 in total

1.  A lectin S-domain receptor kinase mediates lipopolysaccharide sensing in Arabidopsis thaliana.

Authors:  Stefanie Ranf; Nicolas Gisch; Milena Schäffer; Tina Illig; Lore Westphal; Yuriy A Knirel; Patricia M Sánchez-Carballo; Ulrich Zähringer; Ralph Hückelhoven; Justin Lee; Dierk Scheel
Journal:  Nat Immunol       Date:  2015-03-02       Impact factor: 25.606

2.  Activation of camalexin biosynthesis in Arabidopsis thaliana in response to perception of bacterial lipopolysaccharides: a gene-to-metabolite study.

Authors:  Caryn Ann Beets; Ju-Chi Huang; Ntakadzeni Edwin Madala; Ian Dubery
Journal:  Planta       Date:  2012-02-18       Impact factor: 4.116

3.  Plasma Membrane-Associated Proteins Identified in Arabidopsis Wild Type, lbr2-2 and bak1-4 Mutants Treated with LPSs from Pseudomonas syringae and Xanthomonas campestris.

Authors:  Benedict C Offor; Msizi I Mhlongo; Ian A Dubery; Lizelle A Piater
Journal:  Membranes (Basel)       Date:  2022-06-10

4.  Deciphering the dual effect of lipopolysaccharides from plant pathogenic Pectobacterium.

Authors:  Kettani-Halabi Mohamed; Tran Daniel; Dauphin Aurélien; Hayat El-Maarouf-Bouteau; Errakhi Rafik; Delphine Arbelet-Bonnin; Bernadette Biligui; Val Florence; Ennaji Moulay Mustapha; Bouteau François
Journal:  Plant Signal Behav       Date:  2015

5.  Molecular characterization of an elicitor-responsive Armadillo repeat gene (GhARM) from cotton (Gossypium hirsutum).

Authors:  Sonia M Phillips; Ian A Dubery; Henriette van Heerden
Journal:  Mol Biol Rep       Date:  2012-06-20       Impact factor: 2.742

6.  Burkholderia cenocepacia Lipopolysaccharide Modification and Flagellin Glycosylation Affect Virulence but Not Innate Immune Recognition in Plants.

Authors:  Maryam Khodai-Kalaki; Angel Andrade; Yasmine Fathy Mohamed; Miguel A Valvano
Journal:  MBio       Date:  2015-06-04       Impact factor: 7.867

7.  Comparative conventional- and quantum dot-labeling strategies for LPS binding site detection in Arabidopsis thaliana mesophyll protoplasts.

Authors:  Londiwe S Mgcina; Ian A Dubery; Lizelle A Piater
Journal:  Front Plant Sci       Date:  2015-05-12       Impact factor: 5.753

8.  Isonitrosoacetophenone drives transcriptional reprogramming in Nicotiana tabacum cells in support of innate immunity and defense.

Authors:  Arnaud T Djami-Tchatchou; Mmapula P Maake; Lizelle A Piater; Ian A Dubery
Journal:  PLoS One       Date:  2015-02-06       Impact factor: 3.240

9.  Lipopolysaccharide perception leads to dynamic alterations in the microtranscriptome of Arabidopsis thaliana cells and leaf tissues.

Authors:  Arnaud T Djami-Tchatchou; Ian A Dubery
Journal:  BMC Plant Biol       Date:  2015-03-07       Impact factor: 4.215

10.  Multi-platform metabolomic analyses of ergosterol-induced dynamic changes in Nicotiana tabacum cells.

Authors:  Fidele Tugizimana; Paul A Steenkamp; Lizelle A Piater; Ian A Dubery
Journal:  PLoS One       Date:  2014-01-31       Impact factor: 3.240

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