Arabidopsis cell wall composition determines disease resistance specificity and fitness

水煤浆 细胞壁 生物 拟南芥 糖组 植物免疫 植物抗病性 表型 突变体 植物 微生物学 生物化学 基因 糖蛋白 聚糖 RDF公司 语义网 SPARQL公司 计算机科学 情报检索
作者
Antonio Molina,Eva Miedes,Laura Bacete,J. Tinguaro Rodríguez,Hugo Mélida,Nicolás Denancé,Andrea Sánchez‐Vallet,Marie-Pierre Rivière,Gemma López,Amandine Freydier,Xavier Barlet,Sivakumar Pattathil,Sei Kwang Hahn,Deborah Goffner
标识
DOI:10.1101/2020.05.21.105650
摘要

Abstract Plant cell walls are complex structures subject to dynamic remodeling in response to developmental and environmental cues, and play essential functions in disease resistance responses. We tested the specific contribution of plant cell walls to immunity by determining the susceptibility of a set of Arabidopsis cell wall mutants ( cwm ) to pathogens with different parasitic styles: a vascular bacterium, a necrotrophic fungus and a biotrophic oomycete. Remarkably, most cwm mutants tested (31/38; 81.6%) showed alterations in their resistance responses to at least one of these pathogens, in comparison to wild-type plants, illustrating the relevance of wall composition in determining disease resistance phenotypes. We found that the enhanced resistance of cwm plants to the necrotrophic and vascular pathogens negatively impacted on cwm fitness traits, like biomass and seed yield. Enhanced resistance of cwm plants is not only mediated by canonical immune pathways, like those modulated by phytohormones or Microbe-Associated Molecular Patterns, which are not de-regulated in all cwm tested. Pectin-enriched wall fractions isolated from cwm plants triggered immune responses in other plants, suggesting that wall-mediated defensive pathways might contribute to cwm resistance. Cell walls of cwm plants show a high diversity of composition alterations as revealed by glycome profiling that detect specific wall carbohydrate moieties. Mathematical analysis of glycome profiling data identified correlations between the amounts of specific wall carbohydrate moieties and disease resistance phenotypes of cwm plants. These data support the relevant and specific function of plant wall composition in plant immune response modulation and in balancing disease resistance/development trade-offs.
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