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首页> 外文期刊>Fungal Genetics and Biology >The FvMK1 mitogen-activated protein kinase gene regulates conidiation, pathogenesis, and fumonisin production in Fusarium verticillioides.
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The FvMK1 mitogen-activated protein kinase gene regulates conidiation, pathogenesis, and fumonisin production in Fusarium verticillioides.

机译:FvMK1 丝裂原激活的蛋白激酶基因调节黄萎病菌的分生孢子,发病机理和伏马菌素的产生。

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Fusarium verticillioides is one of the most important fungal pathogens to cause destructive diseases of maize worldwide. Fumonisins produced by the fungus are harmful to human and animal health. To date, our understanding of the molecular mechanisms associated with pathogenicity and fumonisin biosynthesis in F. verticillioides is limited. Because MAP kinase pathways have been implicated in regulating diverse processes important for plant infection in phytopathogenic fungi, in this study we identified and functionally characterized the FvMK1 gene in F. verticillioides. FvMK1 is orthologous to FMK1 in F. oxysporum and GPMK1 in F. graminearum. The Fvmk1 deletion mutant was reduced in vegetative growth and production of microconidia. However, it was normal in sexual reproduction and increased in the production of macroconidia. In infection assays with developing corn kernels, the Fvmk1 mutant was non-pathogenic and failed to colonize through wounding sites. It also failed to cause stalk rot symptoms beyond the inoculation sites on corn stalks, indicating that FvMK1 is essential for plant infection. Furthermore, the Fvmk1 mutant was significantly reduced in fumonisin production and expression levels of FUM1 and FUM8, two genes involved in fumonisin biosynthesis. The defects of the Fvmk1 mutant were fully complemented by re-introducing the wild type FvMK1 allele. These results demonstrate that FvMK1 plays critical roles in the regulation of vegetative growth, asexual reproduction, fumonisin biosynthesis, and pathogenicity.
机译:丝状镰刀菌(Fusarium v​​erticillioides)是引起全世界玉米破坏性疾病的最重要的真菌病原体之一。真菌产生的伏马菌素对人类和动物健康有害。迄今为止,我们对与 F致病性和伏马菌素生物合成有关的分子机制的了解。 verticillioides 是有限的。由于MAP激酶通路与调节植物致病真菌中植物感染的重要过程有关,因此在本研究中,我们鉴定了 F中的 FvMK1 基因并对其进行了功能表征。丝状虫。 FvMK1 与 F中的 FMK1 直系同源。 F中的oxysporum 和 GPMK1 。禾本科。 Fvmk1 缺失突变体的营养生长和微分生孢子的产生均减少。但是,这在性生殖中是正常的,而在大分生孢子的产生中则增加。在具有发展中的玉米粒的感染试验中, Fvmk1 突变体是非致病性的,无法通过伤口部位定居。它还未能在玉米秸秆上的接种部位以外引起秸秆腐烂症状,表明 FvMK1 对植物感染至关重要。此外, Fvmk1 突变体在伏马毒素的生产中显着减少,而与伏马菌素生物合成有关的两个基因 FUM1 和 FUM8 的表达水平也大大降低。通过重新引入野生型 FvMK1 等位基因,完全弥补了 Fvmk1 突变体的缺陷。这些结果表明, FvMK1 在营养生长,无性繁殖,伏马菌素生物合成和致病性的调控中起着关键作用。

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