Phytopathology. 1998 Oct;88(10):1094-100. doi: 10.1094/PHYTO.1998.88.10.1094.
ABSTRACT Coronatine is a non-host-specific chlorosis-inducing phytotoxin produced by the tomato and crucifer pathogen Pseudomonas syringae pv. tomato DC3000. How the chromosomal gene cluster controlling toxin synthesis in this strain is regulated in planta is unknown. Ice nucleation-active cor:inaZ marker-exchange derivatives of strain DC3000 were used to determine coronatine gene expression in various host and nonhost plants and in a minimal medium supplemented with selected tomato plant constituents. Ice nucleation activity, which was first detected 4 h after inoculation, was highest in cabbage, tomato, and soybean and lowest in melon and cucumber. No correlation existed between bacterial population size and expression level on the various plants. Crude tomato leaf extract and intercellular fluid were strong inducers of toxin synthesis. Based on high-performance liquid chromatography analyses and bioassays, we concluded that the active components of both preparations were malic and citric acids, with minor contributions coming from shikimic and quinic acid. Although several compounds including glucose and inositol activated the toxin genes when tested at high concentrations (3 to 5 mM), shikimic and quinic acids were the only ones with activity at concentrations below 0.1 mM. Neither acid could be used as a sole carbon source by strain DC3000. The signal activity of shikimic acid was enhanced 10-fold by the addition of glucose. None of the plant phenolics that we screened affected coronatine gene expression.
摘要 冠菌素是由番茄和十字花科病原菌丁香假单胞菌 pv. 番茄 DC3000 产生的一种非寄主特异性的褪绿素诱导植物毒素。目前尚不清楚该菌株中控制毒素合成的染色体基因簇是如何在植物体内调控的。利用具有冰核活性的 cor:inaZ 标记交换衍生物 DC3000 菌株,在各种宿主和非宿主植物以及补充了选定的番茄植物成分的最小培养基中,确定了冠菌素基因的表达情况。接种后 4 小时首次检测到冰核活性,在甘蓝、番茄和大豆中活性最高,在甜瓜和黄瓜中活性最低。在各种植物上,细菌数量的大小与表达水平之间没有相关性。粗提番茄叶提取物和细胞间隙液是毒素合成的强烈诱导剂。根据高效液相色谱分析和生物测定,我们得出结论,这两种制剂的活性成分都是苹果酸和柠檬酸,而莽草酸和奎宁酸的贡献较小。虽然包括葡萄糖和肌醇在内的几种化合物在高浓度(3 至 5mM)下测试时可以激活毒素基因,但只有莽草酸和奎宁酸在低于 0.1mM 的浓度下具有活性。这两种酸都不能被菌株 DC3000 用作唯一的碳源。葡萄糖的添加使莽草酸的信号活性增强了 10 倍。我们筛选的植物酚类物质均不影响冠菌素基因的表达。