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FvKex2 对于轮枝镰孢菌的发育、毒性和产毒素是必需的。

FvKex2 is required for development, virulence, and mycotoxin production in Fusarium verticillioides.

机构信息

Fujian Vocational College of Bioengineering, Fuzhou, 350002, China.

Key Laboratory of Bio-Pesticide and Chemical Biology, Ministry of Education, Fujian Agriculture and Forestry University, Fujian, Fuzhou, 350002, China.

出版信息

Appl Microbiol Biotechnol. 2024 Feb 22;108(1):228. doi: 10.1007/s00253-024-13022-8.

Abstract

Fusarium verticillioides is one of the most important fungal pathogens causing maize ear and stalk rots, thereby undermining global food security. Infected seeds are usually unhealthy for consumption due to contamination with fumonisin B1 (FB1) mycotoxin produced by the fungus as a virulence factor. Unveiling the molecular factors that determine fungal development and pathogenesis will help in the control and management of the diseases. Kex2 is a kexin-like Golgi-resident proprotein convertase that is involved in the activation of some important proproteins. Herein, we identified and functionally characterized FvKex2 in relation to F. verticillioides development and virulence by bioinformatics and functional genomics approaches. We found that FvKex2 is required for the fungal normal vegetative growth, because the growth of the ∆Fvkex2 mutant was significantly reduced on culture media compared to the wild-type and complemented strains. The mutant also produced very few conidia with morphologically abnormal shapes when compared with those from the wild type. However, the kexin-like protein was dispensable for the male role in sexual reproduction in F. verticillioides. In contrast, pathogenicity was nearly abolished on wounded maize stalks and sugarcane leaves in the absence of FvKEX2 gene, suggesting an essential role of Fvkex2 in the virulence of F. verticillioides. Furthermore, high-performance liquid chromatography analysis revealed that the ∆Fvkex2 mutant produced a significantly lower level of FB1 mycotoxin compared to the wild-type and complemented strains, consistent with the loss of virulence observed in the mutant. Taken together, our results indicate that FvKex2 is critical for vegetative growth, FB1 biosynthesis, and virulence, but dispensable for sexual reproduction in F. verticillioides. The study presents the kexin-like protein as a potential drug target for the management of the devastating maize ear and stalk rot diseases. Further studies should aim at uncovering the link between FvKex2 activity and FB1 biosynthesis genes. KEY POINTS: •The kexin-like protein FvKex2 contributes significantly to the vegetative growth of Fusarium verticillioides. •The conserved protein is required for fungal conidiation and conidial morphology, but dispensable for sexual reproduction. •Deletion of FvKEX2 greatly attenuates the virulence and mycotoxin production potential of F. verticillioides.

摘要

镰刀菌(Fusarium verticillioides)是一种重要的真菌病原体,可导致玉米穗和茎腐烂,从而破坏全球粮食安全。由于受真菌产生的黄曲霉毒素 B1(FB1)毒素污染,受感染的种子通常不健康,不能食用。揭示决定真菌发育和发病机制的分子因素将有助于控制和管理这些疾病。Kex2 是一种柯西蛋白酶样高尔基体驻留蛋白前体转化酶,参与一些重要蛋白前体的激活。在此,我们通过生物信息学和功能基因组学方法,鉴定并功能表征了 F. verticillioides 中与 FvKex2 发育和毒力相关的功能。我们发现 FvKex2 对于真菌的正常营养生长是必需的,因为与野生型和互补菌株相比,ΔFvkex2 突变体的生长在培养基上显著降低。与野生型相比,突变体产生的分生孢子数量很少,形态异常。然而,柯西蛋白酶样蛋白在 F. verticillioides 的有性生殖中的雄性作用中是可有可无的。相比之下,在没有 FvKEX2 基因的情况下,在受伤的玉米茎和甘蔗叶片上的致病性几乎被消除,这表明 Fvkex2 在 F. verticillioides 的毒力中起着至关重要的作用。此外,高效液相色谱分析显示,与野生型和互补菌株相比,ΔFvkex2 突变体产生的 FB1 真菌毒素水平显著降低,与观察到的突变体毒力丧失一致。总的来说,我们的结果表明,FvKex2 对于营养生长、FB1 生物合成和毒力至关重要,但对于 F. verticillioides 的有性生殖是可有可无的。该研究表明,柯西蛋白酶样蛋白是一种潜在的药物靶点,可用于管理毁灭性的玉米穗和茎腐烂疾病。进一步的研究应旨在揭示 FvKex2 活性与 FB1 生物合成基因之间的联系。关键点: • 柯西蛋白酶样蛋白 FvKex2 对镰刀菌(Fusarium verticillioides)的营养生长有重要贡献。 • 该保守蛋白对于真菌分生孢子形成和分生孢子形态是必需的,但对于有性生殖是可有可无的。 • FvKEX2 的缺失大大削弱了 F. verticillioides 的毒力和产毒潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff28/10884074/a5aa2a46cd03/253_2024_13022_Fig1_HTML.jpg

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