Role of electrophilic nitrated fatty acids during development and response to abiotic stress processes in plants

Author:

Begara-Morales Juan C1ORCID,Mata-Pérez Capilla1ORCID,Padilla Maria N1ORCID,Chaki Mounira1ORCID,Valderrama Raquel1ORCID,Aranda-Caño Lorena1ORCID,Barroso Juan B1ORCID

Affiliation:

1. Group of Biochemistry and Cell Signaling in Nitric Oxide, Department of Experimental Biology, Center for Advanced Studies in Olive Grove and Olive Oils, Faculty of Experimental Sciences, Campus Universitario ‘Las Lagunillas’ s/n, University of Jaén, Jaén, Spain

Abstract

Abstract Nitro-fatty acids are generated from the interaction of unsaturated fatty acids and nitric oxide (NO)-derived molecules. The endogenous occurrence and modulation throughout plant development of nitro-linolenic acid (NO2-Ln) and nitro-oleic acid (NO2-OA) suggest a key role for these molecules in initial development stages. In addition, NO2-Ln content increases significantly in stress situations and induces the expression of genes mainly related to abiotic stress, such as genes encoding members of the heat shock response family and antioxidant enzymes. The promoter regions of NO2-Ln-induced genes are also involved mainly in stress responses. These findings confirm that NO2-Ln is involved in plant defense processes against abiotic stress conditions via induction of the chaperone network and antioxidant systems. NO2-Ln signaling capacity lies mainly in its electrophilic nature and allows it to mediate a reversible post-translational modification called nitroalkylation, which is capable of modulating protein function. NO2-Ln is a NO donor that may be involved in NO signaling events and is able to generate S-nitrosoglutathione, the major reservoir of NO in cells and a key player in NO-mediated abiotic stress responses. This review describes the current state of the art regarding the essential role of nitro-fatty acids as signaling mediators in development and abiotic stress processes.

Funder

Spanish Ministry of Economy and Competitiveness

Junta de Andalucía

University of Jaén

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference71 articles.

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