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通过功能基因特征和转录组谱分析研究扩展青霉的抗真菌蛋白 PeAfpA 的生物学功能。

Studies on the biological role of the antifungal protein PeAfpA from Penicillium expansum by functional gene characterization and transcriptomic profiling.

机构信息

Food Biotechnology Department, Instituto de Agroquímica y Tecnología de Alimentos (IATA), Consejo Superior de Investigaciones Científicas (CSIC), Catedrático Agustín Escardino Benlloch 7, 46980 Paterna, Valencia, Spain.

Food Biotechnology Department, Instituto de Agroquímica y Tecnología de Alimentos (IATA), Consejo Superior de Investigaciones Científicas (CSIC), Catedrático Agustín Escardino Benlloch 7, 46980 Paterna, Valencia, Spain; Instituto de Biología Molecular y Celular de Plantas (IBMCP), Consejo Superior de Investigaciones Científicas (CSIC), Universitat Politècnica de València, Valencia 46022, Spain.

出版信息

Int J Biol Macromol. 2024 May;266(Pt 1):131236. doi: 10.1016/j.ijbiomac.2024.131236. Epub 2024 Mar 28.

Abstract

Antifungal proteins (AFPs) from filamentous fungi have enormous potential as novel biomolecules for the control of fungal diseases. However, little is known about the biological roles of AFPs beyond their antifungal action. Penicillium expansum encodes three phylogenetically different AFPs (PeAfpA, PeAfpB and PeAfpC) with diverse profiles of antifungal activity. PeAfpA stands out as a highly active AFP that is naturally produced at high yields. Here, we provide new data about the function of PeAfpA in P. expansum through phenotypical characterization and transcriptomic studies of null mutants of the corresponding afpA gene. Mutation of afpA did not affect axenic growth, conidiation, virulence, stress responses or sensitivity towards P. expansum AFPs. However, RNA sequencing evidenced a massive transcriptomic change linked to the onset of PeAfpA production. We identified two large gene expression clusters putatively involved in PeAfpA function, which correspond to genes induced or repressed with the production of PeAfpA. Functional enrichment analysis unveiled significant changes in genes related to fungal cell wall remodeling, mobilization of carbohydrates and plasma membrane transporters. This study also shows a putative co-regulation between the three afp genes. Overall, our transcriptomic analyses provide valuable insights for further understanding the biological functions of AFPs.

摘要

丝状真菌来源的抗真菌蛋白 (AFPs) 作为新型生物分子,具有控制真菌病的巨大潜力。然而,除了抗真菌作用之外,AFPs 的生物学功能知之甚少。扩展青霉编码三种系统发育上不同的 AFP(PeAfpA、PeAfpB 和 PeAfpC),具有不同的抗真菌活性谱。PeAfpA 是一种高度活跃的 AFP,其天然产量很高。在这里,我们通过相应的 afpA 基因缺失突变体的表型特征和转录组研究,提供了关于 PeAfpA 在扩展青霉中的功能的新数据。afpA 的突变不影响无共生生长、分生孢子形成、毒力、应激反应或对扩展青霉 AFP 的敏感性。然而,RNA 测序证明了与 PeAfpA 产生相关的大规模转录组变化。我们鉴定了两个与 PeAfpA 功能相关的大型基因表达簇,它们分别对应于 PeAfpA 产生诱导或抑制的基因。功能富集分析揭示了与真菌细胞壁重塑、碳水化合物和质膜转运体动员相关基因的显著变化。本研究还显示了三个 afp 基因之间的潜在共调控。总体而言,我们的转录组分析为进一步了解 AFP 的生物学功能提供了有价值的见解。

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