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Taylor and Francis Group, Plant Signaling & Behavior, 11(7), p. 1447-1449, 2012

DOI: 10.4161/psb.21779

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Signaling role of oligogalacturonides derived during cell wall degradation

Journal article published in 2012 by José G. Vallarino ORCID, Sonia Osorio
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

In addition to the role of the cell wall as a physical barrier against pathogens, some of its constituents, such as pectin-derived oligogalacturonides (OGAs) are essential components to trigger signaling pathways that induce rapid defense responses. Many pathogens directly penetrate the cell wall to access water and nutrients of the plant protoplast, and a rigid cell wall can fend off pathogen attack by forming an impenetrable physical barrier. Thus, cell wall integrity sensing is one mechanism by which plants may detect pathogen attack. Moreover, when the plant-pathogen interaction occurred, OGAs released during cell wall modification can trigger plant defense (e.g., production of reactive oxygen species, production of anti-microbial metabolites and synthesis of pathogenesis-related proteins). This review documents and discusses studies suggesting that OGAs play a dual signaling role during pathogen attack by inducing defense responses and plant architecture adjustment.