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Are1 介导的氮代谢与寄生真菌深绿木霉中铁的调节有关。

Are1-mediated nitrogen metabolism is associated with iron regulation in the mycoparasite Trichoderma atroviride.

机构信息

Department of Microbiology, University of Innsbruck, Innsbruck, Austria.

Department of Pharmacognosy, Institute of Pharmacy, Center for Molecular Biosciences (CMBI), University of Innsbruck, Innsbruck, Austria.

出版信息

Microbiol Res. 2024 Dec;289:127907. doi: 10.1016/j.micres.2024.127907. Epub 2024 Sep 24.

DOI:10.1016/j.micres.2024.127907
PMID:39348793
Abstract

Trichoderma atroviride is a mycoparasitic fungus with antagonistic activity against fungal pathogens and is used as a pathogen control agent alternative to synthetic fungicides. Sensing nutrient availability in the environment and adjusting metabolism for optimal growth, development and reproduction is essential for adaptability and is relevant to its mycoparasitic activity. During mycoparasitism, secondary metabolites are produced to weaken the fungal prey and support the attack. Are1-like proteins act as major GATA-type transcription factors in the activation of genes subject to nitrogen catabolite repression. Since the quality and quantity of nitrogen has been proven particularly relevant in remodeling the biosynthesis of secondary metabolites in fungi, we decided to functionally characterize Are1, the ortholog of Aspergillus nidulans AreA, in T. atroviride. We show that the growth of the T. atroviride ∆are1 mutant is impaired in comparison to the wild type on several nitrogen sources. Deletion of are1 enhanced sensitivity to oxidative and cell-wall stressors and altered the mycoparasitic activity. We were able to identify for the first time a link between Are1 and iron homeostasis via a regulatory mechanism that does not appear to be strictly linked to the nitrogen source, but rather to an independent role of the transcription factor.

摘要

深绿木霉是一种对真菌病原体具有拮抗活性的真菌寄生菌,被用作替代合成杀菌剂的病原体控制剂。在环境中感知养分的可用性并调整代谢以实现最佳的生长、发育和繁殖对于适应性至关重要,并且与它的真菌寄生活性相关。在真菌寄生过程中,会产生次生代谢物来削弱真菌猎物并支持攻击。Are1 样蛋白作为主要的 GATA 型转录因子,在受氮分解代谢物抑制的基因的激活中起作用。由于氮的质量和数量已被证明在真菌次生代谢物生物合成的重塑中特别相关,我们决定对深绿木霉中的 Aspergillus nidulans AreA 的同源物 Are1 进行功能表征。我们表明,与野生型相比,深绿木霉 ∆are1 突变体在几种氮源上的生长受到损害。are1 的缺失增强了对氧化和细胞壁应激物的敏感性,并改变了真菌寄生活性。我们首次能够通过一种调节机制将 Are1 与铁稳态联系起来,这种调节机制似乎与氮源没有严格联系,而是与转录因子的独立作用有关。

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