Viñas María, Karlovsky Petr
CIGRAS, University of Costa Rica, San Jose 2060, Costa Rica.
Molecular Phytopathology and Mycotoxin Research, University of Göttingen, 37077 Göttingen, Germany.
Toxins (Basel). 2025 May 3;17(5):226. doi: 10.3390/toxins17050226.
The special metabolite of spp. zearalenone (ZEN) exerts estrogenic effects on mammals, stimulates plant growth, stimulates sexual development in fungi, and inhibits fungal growth. These activities inspired hypotheses about the biological function of ZEN. We briefly review the discovery of ZEN and its implications. The main subject of this review is a critical assessment of the hypotheses that ZEN is a fungal hormone, a plant hormone, a virulence factor, or a fungal defense metabolite. Conceptual and technical issues related to testing these hypotheses, such as inadequate analytical methods, confusion of incidental effects with biological functions, and lack of normalization, are illuminated. Based on these considerations, gene knockout experiments, and on the effects of biotic interactions on ZEN synthesis, we argue that ZEN is a defense metabolite protecting spp. against mycoparasites and competitors. Similar reasoning and published data suggest that the metabolite fusaristatin A fulfils the same function. Fungi produce many macrolactones of resorcylic acid (RALs) and dihydroxyphenylacetic acid (DHPLs) with properties similar to ZEN. Their widespread occurrence, antifungal activity, and further considerations prompt us to hypothesize that the fundamental function of fungal RALs and DHPLs lies in defense and interference competition.
玉米赤霉烯酮(ZEN)是某些物种的特殊代谢产物,对哺乳动物具有雌激素样作用,能刺激植物生长,促进真菌的有性发育,并抑制真菌生长。这些活性引发了关于ZEN生物学功能的假说。我们简要回顾ZEN的发现及其影响。本综述的主要主题是对以下假说的批判性评估:ZEN是一种真菌激素、植物激素、毒力因子或真菌防御代谢产物。阐明了与检验这些假说相关的概念和技术问题,如分析方法不足、将附带效应与生物学功能混淆以及缺乏标准化等。基于这些考虑、基因敲除实验以及生物相互作用对ZEN合成的影响,我们认为ZEN是一种保护某些物种免受真菌寄生菌和竞争者侵害的防御代谢产物。类似的推理和已发表的数据表明,代谢产物镰刀菌素A具有相同的功能。真菌产生许多具有与ZEN相似性质的间苯二酚酸大环内酯(RALs)和二羟基苯乙酸(DHPLs)。它们的广泛存在、抗真菌活性以及进一步的考虑促使我们推测真菌RALs和DHPLs的基本功能在于防御和干扰竞争。