Lünne Friederike, Niehaus Eva-Maria, Lipinski Sarah, Kunigkeit Jonas, Kalinina Svetlana A, Humpf Hans-Ulrich
Institute of Food Chemistry, Westfälische Wilhelms-Universität Münster, Corrensstraße 45, 48149 Münster, Germany.
Institute of Food Chemistry, Westfälische Wilhelms-Universität Münster, Corrensstraße 45, 48149 Münster, Germany.
Fungal Genet Biol. 2020 Dec;145:103481. doi: 10.1016/j.fgb.2020.103481. Epub 2020 Oct 29.
Claviceps purpurea is a plant pathogenic fungus which is still highly relevant in modern agriculture as it infects grasses such as rye and wheat. The disease caused by the consumption of contaminated grain or flour has been known since the Middle Ages and is termed ergotism. The main cause for the toxicity of this fungus is attributed to the ergot alkaloids. Apart from these alkaloids and the ergochromes known as ergot pigments, the secondary metabolism of C. purpurea is not well investigated. This study demonstrated the function of the polyketide synthase PKS7 in C. purpurea by determining the effect of its overexpression on metabolite profiles. For the first time, the depsides lecanoric acid, ethyl lecanorate, gerfelin, and C10-deoxy gerfelin were discovered as secondary metabolites of C. purpurea. Additionally, to estimate the contribution of isolated secondary metabolites to the toxic effects of C. purpurea, lecanoric acid, ethyl lecanorate, and orsellinic acid were tested on HepG2 and CCF-STTG1 cell lines. This study provides the first report on the function of C. purpurea PKS7 responsible for the production of depsides, among which lecanoric acid and ethyl lecanorate were identified as main secondary metabolites.
麦角菌是一种植物病原真菌,在现代农业中仍然具有高度相关性,因为它会感染黑麦和小麦等禾本科植物。食用受污染的谷物或面粉所引起的疾病自中世纪就已为人所知,被称为麦角中毒。这种真菌毒性的主要原因归因于麦角生物碱。除了这些生物碱和被称为麦角色素的麦角铬之外,麦角菌的次生代谢尚未得到充分研究。本研究通过测定聚酮合酶PKS7过表达对代谢物谱的影响,证明了其在麦角菌中的功能。首次发现地衣缩酚酸、地衣缩酚酸乙酯、格费林和C10-脱氧格费林等缩酚酸作为麦角菌的次生代谢产物。此外,为了评估分离出的次生代谢产物对麦角菌毒性作用的贡献,在地人肝癌细胞系和人脉络丛乳头状瘤细胞系上测试了地衣缩酚酸、地衣缩酚酸乙酯和苔色酸。本研究首次报道了麦角菌中负责缩酚酸产生的PKS7的功能,其中地衣缩酚酸和地衣缩酚酸乙酯被鉴定为主要次生代谢产物。