Plants offer a simpler and cheaper alternative to mammalian animal models for the study of endoplasmic reticulum glycoprotein folding quality control (ERQC). In particular, the Arabidopsis thaliana (At) innate immune response to bacterial peptides provides an easy means of assaying ERQC function in vivo. A number of mutants that are useful to study ERQC in planta have been described in the literature, but only for a subset of these mutants the innate immune response to bacterial elicitors has been measured beyond monitoring plant weight and some physio-pathological parameters related to the plant immune response. In order to probe deeper into the role of ERQC in the plant immune response, we monitored expression levels of the Phosphate-induced 1 (PHI-1) and reticulin-oxidase homologue (RET-OX) genes in the At ER α-Glu II rsw3 and the At UGGT uggt1-1 mutant plants, in response to bacterial peptides elf18 and flg22. The elf18 response was impaired in the rsw3 but not completely abrogated in the uggt1-1 mutant plants, raising the possibility that the latter enzyme is partly dispensable for EF-Tu receptor (EFR) signaling. In the rsw3 mutant, seedling growth was impaired only by concomitant application of the At ER α-Glu II NB-DNJ inhibitor at concentrations above 500 nM, compatibly with residual activity in this mutant. The study highlights the need for extending plant innate immune response studies to assays sampling EFR signaling at the molecular level.

EFR-mediated innate immune response in arabidopsis thaliana is a useful tool for identification of novel ERQC modulators / Lia, A.; Gallo, A.; Marti, L.; Roversi, P.; Santino, A.. - In: GENES. - ISSN 2073-4425. - 10:1(2019), p. 15. [10.3390/genes10010015]

EFR-mediated innate immune response in arabidopsis thaliana is a useful tool for identification of novel ERQC modulators

Marti L.;
2019

Abstract

Plants offer a simpler and cheaper alternative to mammalian animal models for the study of endoplasmic reticulum glycoprotein folding quality control (ERQC). In particular, the Arabidopsis thaliana (At) innate immune response to bacterial peptides provides an easy means of assaying ERQC function in vivo. A number of mutants that are useful to study ERQC in planta have been described in the literature, but only for a subset of these mutants the innate immune response to bacterial elicitors has been measured beyond monitoring plant weight and some physio-pathological parameters related to the plant immune response. In order to probe deeper into the role of ERQC in the plant immune response, we monitored expression levels of the Phosphate-induced 1 (PHI-1) and reticulin-oxidase homologue (RET-OX) genes in the At ER α-Glu II rsw3 and the At UGGT uggt1-1 mutant plants, in response to bacterial peptides elf18 and flg22. The elf18 response was impaired in the rsw3 but not completely abrogated in the uggt1-1 mutant plants, raising the possibility that the latter enzyme is partly dispensable for EF-Tu receptor (EFR) signaling. In the rsw3 mutant, seedling growth was impaired only by concomitant application of the At ER α-Glu II NB-DNJ inhibitor at concentrations above 500 nM, compatibly with residual activity in this mutant. The study highlights the need for extending plant innate immune response studies to assays sampling EFR signaling at the molecular level.
2019
Arabidopsis thaliana; EFR; Elf18; ER α; Flg22; Glucosidase II; Glycoprotein folding quality control; NB-DNJ; Rsw3; UGGT; Uggt1-1
01 Pubblicazione su rivista::01a Articolo in rivista
EFR-mediated innate immune response in arabidopsis thaliana is a useful tool for identification of novel ERQC modulators / Lia, A.; Gallo, A.; Marti, L.; Roversi, P.; Santino, A.. - In: GENES. - ISSN 2073-4425. - 10:1(2019), p. 15. [10.3390/genes10010015]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1303672
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