Cimmino Alessio, Sarrocco Sabrina, Masi Marco, Diquattro Stefania, Evidente Marco, Vannacci Giovanni, Evidente Antonio
Dipartimento di Scienze Chimiche, Università di Napoli Federico II, Complesso Universitario Monte Sant'Angelo, Via Cintia 4, IT-80126, Napoli.
Dipartimento di Scienze Agrarie, Alimentari e Agro-ambientali, Università di Pisa, via del Borghetto 80, IT-56124, Pisa.
Chem Biodivers. 2016 Nov;13(11):1593-1600. doi: 10.1002/cbdv.201600145. Epub 2016 Nov 7.
Herbivorous mammal dung supports a large variety of fimicolous fungi able to produce different bioactive secondary metabolites to compete with other organisms. Recently, the organic extracts of the Solid State Fermentation (SSF) cultures of Cleistothelebolus nipigonensis and Neogymnomyces virgineus, showing strong antifungal activity, were preliminarily investigated. This manuscript reports the isolation of the main metabolites identified, using spectroscopic and optical methods, as fusaproliferin (1) and terpestacin (2). Furthermore, some key hemisynthetic derivatives were prepared and their antifungal activity was tested against the same fungi previously reported to be affected by the organic extracts obtained from SSF. These metabolites and their derivatives resulted able to reduce the growth of Alternaria brassicicola, Botrytis cinerea and Fusarium graminearum in a variable extent strongly dependent from chemical modifications and test fungi. The hydroxy enolic group at C(17) appeared to be a structural feature important to impart activity. This study represents the first report of these secondary metabolites produced by C. nipigonensis and N. virgineus.
食草哺乳动物的粪便能支持多种粪生真菌,这些真菌能够产生不同的生物活性次生代谢产物以与其他生物竞争。最近,对显示出强抗真菌活性的尼皮贡闭囊壳菌(Cleistothelebolus nipigonensis)和弗吉尼亚新裸囊菌(Neogymnomyces virgineus)固态发酵(SSF)培养物的有机提取物进行了初步研究。本论文报道了通过光谱和光学方法鉴定出的主要代谢产物的分离,它们被鉴定为镰孢增殖素(1)和柄曲菌素(2)。此外,还制备了一些关键的半合成衍生物,并测试了它们对先前报道的受SSF有机提取物影响的相同真菌的抗真菌活性。这些代谢产物及其衍生物能够不同程度地抑制芸苔链格孢(Alternaria brassicicola)、灰葡萄孢(Botrytis cinerea)和禾谷镰刀菌(Fusarium graminearum)的生长,其抑制程度在很大程度上取决于化学修饰和测试真菌。C(17)位的羟基烯醇基团似乎是赋予活性的重要结构特征。本研究首次报道了由尼皮贡闭囊壳菌和弗吉尼亚新裸囊菌产生的这些次生代谢产物。