首页> 外文期刊>Fungal Genetics and Biology >Fusarium oxysporum Adh1 has dual fermentative and oxidative functions and is involved in fungal virulence in tomato plants.
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Fusarium oxysporum Adh1 has dual fermentative and oxidative functions and is involved in fungal virulence in tomato plants.

机译:尖孢镰刀菌 Adh1具有双重发酵和氧化功能,并参与番茄植株的真菌毒性。

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摘要

An alcohol dehydrogenase gene, adh1, has been identified in the vascular wilt fungus Fusarium oxysporum f. sp. lycopersici. Reverse transcription polymerase chain reaction (RT-PCR) analysis revealed that adh1 is highly expressed in mycelia grown in potato dextrose liquid medium (PDB) under hypoxic conditions, as compared to mycelia grown under aerobic conditions. One spontaneous allyl alcohol-resistant (AllyR) mutant exhibited insertion of an incomplete F. oxysporum transposable element, while another mutant contained a short (13 nucleotide) deletion, in both cases interrupting the coding region of the adh1 gene. These mutations caused deficiency in Adh activity due to loss of the main constitutive isoform of Adh1, as well as alteration of different physiological parameters related to carbon and energy metabolism, including the ability to use ethanol as a carbon source under aerobic conditions; impaired growth under hypoxic conditions with glucose as the carbon source; and diminished production of ethanol in glucose-containing medium. Interestingly, the adh1 mutations resulted in a significant delay in fungal disease development in tomato plants. Complementation with the wild-type adh1 allele repaired all defects caused by mutation, indicating that the product of the adh1 gene has dual enzymatic functions (fermentative and oxidative), depending on culture conditions, and is also required for full fungal virulence.
机译:在维管束枯萎病菌尖孢镰刀菌(Fusarium oxysporum) f中鉴定出一种醇脱氢酶基因 adh1 。 sp。 lycopersici 。逆转录聚合酶链反应(RT-PCR)分析表明,与缺氧条件下生长的菌丝体相比, adh1 在缺氧条件下在马铃薯葡萄糖液体培养基(PDB)中生长的菌丝体中高表达。一个自发的耐烯丙醇的(Ally R )突变体表现出不完整的 F插入。氧孢子转座因子,而另一个突变体含有短的(13个核苷酸)缺失,在两种情况下都中断了 adh1 基因的编码区。这些突变导致Adh1的主要组成型亚型的丧失,以及与碳和能量代谢有关的不同生理参数的改变,包括在有氧条件下使用乙醇作为碳源的能力,导致Adh活性不足。以葡萄糖为碳源的低氧条件下的生长受损;并减少了含葡萄糖培养基中乙醇的产生。有趣的是, adh1 突变导致番茄植物真菌病害的发展显着延迟。与野生型 adh1 等位基因的互补修复了突变引起的所有缺陷,表明 adh1 基因的产物具有双重酶功能(发酵性和氧化性),具体取决于培养物条件,并且对于充分的真菌毒力也是必需的。

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