Department of Plant Biotechnology and Genetics, Ghent University, Ghent, Belgium.
Plant Physiol. 2010 Oct;154(2):847-60. doi: 10.1104/pp.110.158972. Epub 2010 Aug 13.
A mutant of tomato (Solanum lycopersicum) with reduced abscisic acid (ABA) production (sitiens) exhibits increased resistance to the necrotrophic fungus Botrytis cinerea. This resistance is correlated with a rapid and strong hydrogen peroxide-driven cell wall fortification response in epidermis cells that is absent in tomato with normal ABA production. Moreover, basal expression of defense genes is higher in the mutant compared with the wild-type tomato. Given the importance of this fast response in sitiens resistance, we investigated cell wall and cuticle properties of the mutant at the chemical, histological, and ultrastructural levels. We demonstrate that ABA deficiency in the mutant leads to increased cuticle permeability, which is positively correlated with disease resistance. Furthermore, perturbation of ABA levels affects pectin composition. sitiens plants have a relatively higher degree of pectin methylesterification and release different oligosaccharides upon inoculation with B. cinerea. These results show that endogenous plant ABA levels affect the composition of the tomato cuticle and cell wall and demonstrate the importance of cuticle and cell wall chemistry in shaping the outcome of this plant-fungus interaction.
番茄(Solanum lycopersicum)突变体中脱落酸(ABA)产量降低(sitiens)表现出对坏死真菌 Botrytis cinerea 的抗性增加。这种抗性与表皮细胞中迅速而强烈的过氧化氢驱动的细胞壁强化反应相关,而在 ABA 正常生产的番茄中则不存在这种反应。此外,与野生型番茄相比,突变体中防御基因的基础表达更高。鉴于这种快速反应在 sitiens 抗性中的重要性,我们在化学、组织学和超微结构水平上研究了突变体的细胞壁和角质层特性。我们证明,突变体中 ABA 的缺乏导致角质层通透性增加,这与抗病性呈正相关。此外,ABA 水平的干扰会影响果胶的组成。sitiens 植物的果胶甲酯化程度相对较高,并且在接种 Botrytis cinerea 后会释放不同的低聚糖。这些结果表明,内源植物 ABA 水平会影响番茄角质层和细胞壁的组成,并证明了角质层和细胞壁化学在塑造这种植物-真菌相互作用的结果方面的重要性。