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The Bdtfl Gene in Alternaria brassicicola Is Important in Detoxifying Brassinin and Maintaining Virulence on Brassica Species

机译:交链孢霉中的Bdtfl基因在解毒芸苔素和维持芸苔属物种的毒力中很重要

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Brassinin is an antifungal compound induced in Brassica plants after microbial infection. Molecular evidence is incomplete, however, in supporting the importance of brassinin in plant resistance to pathogens. To test the importance of brassinin in plant defense, we studied the functions of the gene Bdtfl in the necrotrophic fungus Alternaria brassicicola. Several strains of mutants of this gene were weakly virulent on Brassica species, causing lesions 70% smaller in diameter than the wild type on three Brassica species. These mutants, however, were as virulent as the wild type on Arabidopsis thaliana. They were similar to the wild type in spore germination, colony morphology, and mycelial growth in nutrient-rich media, both with and without stress-inducing chemicals. Unlike wild-type A. brassicicola, however, the mutants failed to germinate and their hyphal growth was arrested in the presence of 200 uM brassinin. When grown in a medium containing 100 uM brassinin, wild-type mycelium entirely converted the brassinin into a nontoxic derivative, of which the precise chemical nature was not established. Mutants of the Bdtfl gene were unable to perform this conversion. Our results support the hypothesis that the ability of A. brassicicola to detoxify brassinin is necessary for successful infection of Brassica species.
机译:油菜素是微生物感染后在芸苔属植物中诱导的抗真菌化合物。但是,分子证据不完全支持花青素在植物抗病原体中的重要性。为了测试芸苔素在植物防御中的重要性,我们研究了Bdtfl基因在坏死性真菌芸苔Alternaria braciicicola中的功能。该基因的几个突变株在芸苔属物种上具有弱毒性,与三种芸苔属物种相比,引起的损伤直径比野生型小70%。然而,这些突变体与拟南芥的野生型一样具有毒性。在有或没有胁迫诱导化学物质的情况下,它们在营养丰富的培养基中的孢子萌发,菌落形态和菌丝体生长均与野生型相似。但是,与野生型油菜曲霉不同,这些突变体无法发芽,并且其菌丝的生长在200 uM油菜素的存在下被阻止。当在含有100 uM油菜素的培养基中生长时,野生型菌丝体会将油菜素完全转化为无毒衍生物,其确切的化学性质尚未确立。 Bdtf1基因的突变体无法执行此转换。我们的结果支持这样的假设,即A. brasicicola解毒braskinin的能力对于成功感染芸苔属植物是必需的。

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