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The Group III Two-Component Histidine Kinase of Filamentous Fungi Is Involved in the Fungicidal Activity of the Bacterial Polyketide Ambruticin▿

机译:丝状真菌的Ⅲ族二组分组氨酸激酶参与了细菌聚酮化合物安非他汀的杀真菌活性

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摘要

We have shown that the plant pathogen Alternaria brassicicola exhibited very high susceptibility to ambruticin VS4 and to a lesser extent to the phenylpyrrole fungicide fludioxonil. These compounds are both derived from natural bacterial metabolites with antifungal properties and are thought to exert their toxicity by interfering with osmoregulation in filamentous fungi. Disruption of the osmosensor group III histidine kinase gene AbNIK1 (for A. brassicola NIK1) resulted in high levels of resistance to ambruticin and fludioxonil, while a mutant isolate characterized by a single-amino-acid substitution in the HAMP domain of the kinase only exhibited moderate resistance. Moreover, the natural resistance of Saccharomyces cerevisiae to these antifungal molecules switched to sensitivity in strains expressing AbNIK1p. We also showed that exposure to fludioxonil and ambruticin resulted in abnormal phosphorylation of a Hog1-like mitogen-activated protein kinase (MAPK) in A. brassicicola. Parallel experiments carried out with wild-type and mutant isolates of Neurospora crassa revealed that, in this species, ambruticin susceptibility was dependent on the OS1-RRG1 branch of the phosphorelay pathway downstream of the OS2 MAPK cascade but independent of the yeast Skn7-like response regulator RRG2. These results show that the ability to synthesize a functional group III histidine kinase is a prerequisite for the expression of ambruticin and phenylpyrrole susceptibility in A. brassicicola and N. crassa and that, at least in the latter species, improper activation of the high-osmolarity glycerol-related pathway could explain their fungicidal properties.
机译:我们已经表明,植物病原体黄铜链格孢菌对ambrutticin VS4表现出很高的敏感性,而对苯基吡咯类杀真菌剂氟地肟则表现出较小的敏感性。这些化合物均来自具有抗真菌特性的天然细菌代谢产物,并被认为通过干扰丝状真菌中的渗透调节而发挥其毒性。渗透传感器组III组氨酸激酶基因AbNIK1(对于A. brasicola NIK1)的破坏导致对ambrutticin和fludioxonil的高水平抗性,而仅在激酶的HAMP域中表现出单氨基酸取代的突变株中等抵抗力。此外,酿酒酵母对这些抗真菌分子的天然抗性转换为表达AbNIK1p的菌株的敏感性。我们还表明,暴露于氟狄莫尼和ambruticin会导致A. brasicicola中的Hog1样丝裂原激活蛋白激酶(MAPK)异常磷酸化。用野生神经孢霉的突变体和分离株进行的平行实验表明,在该物种中,安布洛汀的敏感性取决于OS2 MAPK级联下游磷酸沉积途径的OS1-RRG1分支,但独立于酵母Skn7样反应调节器RRG2。这些结果表明,合成功能性III族组氨酸激酶的能力是在A. brasicicola和N. crassa中表达安布洛汀和苯并吡咯敏感性的先决条件,至少在后一种物种中,高渗透压的激活不当甘油相关途径可以解释其杀真菌特性。

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