Carton Camille, Magnin-Robert Maryline, Randoux Béatrice, Pau-Roblot Corinne, Lounès-Hadj Sahraoui Anissa
Unité de Chimie Environnementale et Interactions sur le Vivant (UCEIV)-UR 4492, Université du Littoral Côte d'Opale, 50 Rue Ferdinand Buisson, 62228 Calais Cedex, France.
UMRT INRAE 1158 BioEcoAgro-Biologie des Plantes et Innovation, Université de Picardie Jules Verne, UFR des Sciences, 33 Rue St Leu, 80039 Amiens, France.
Molecules. 2025 Mar 20;30(6):1392. doi: 10.3390/molecules30061392.
During plant development or interactions with pathogens, modifications of the plant cell wall occur. Among the enzymes involved, pectinases, particularly polygalacturonases (PGases), play a crucial role in the controlled hydrolysis of cell wall polysaccharides, leading to the formation of oligogalacturonides (OGs). These pectin-derived fragments act as key elicitors of plant defense responses, stimulating innate immunity and enhancing resistance to pathogens by modulating the expression of genes involved in immune responses and inducing the production of defense compounds. OGs are of particular interest for plant protection as a natural alternative to conventional phytosanitary products as they can be obtained through chemical, thermal, or enzymatic degradation of plant biomass. In a sustainable approach, agricultural by-products rich in pectin, such as citrus peels, apple pomace, or sugar beet pulp, offer an eco-friendly and cost-effective alternative for OG production. Thus, the current review aims to (i) update the state of the art about the different methods used to produce OGs, (ii) explore the potential of OGs as bio-based biocontrol molecules, and (iii) examine the relevance of new pectin sources for OG production.
在植物发育过程或与病原体相互作用期间,植物细胞壁会发生修饰。在所涉及的酶中,果胶酶,特别是多聚半乳糖醛酸酶(PGases),在细胞壁多糖的可控水解中起关键作用,导致低聚半乳糖醛酸(OGs)的形成。这些源自果胶的片段作为植物防御反应的关键激发子,通过调节参与免疫反应的基因表达并诱导防御化合物的产生,刺激先天免疫并增强对病原体的抗性。OGs作为传统植物卫生产品的天然替代品,在植物保护方面具有特别的意义,因为它们可以通过植物生物质的化学、热或酶促降解获得。以可持续的方式,富含果胶的农业副产品,如柑橘皮、苹果渣或甜菜浆,为OGs的生产提供了一种环保且经济高效的替代方案。因此,本综述旨在(i)更新用于生产OGs的不同方法的现状,(ii)探索OGs作为基于生物的生物防治分子的潜力,以及(iii)研究新的果胶来源对OGs生产的相关性。