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源自内生真菌的结构罕见的次生代谢产物

Structurally Uncommon Secondary Metabolites Derived from Endophytic Fungi.

作者信息

Ortega Humberto E, Torres-Mendoza Daniel, Caballero E Zuleima, Cubilla-Rios Luis

机构信息

Laboratory of Tropical Bioorganic Chemistry, Faculty of Natural, Exact Sciences and Technology, University of Panama, Panama City 0824, Panama.

Department of Organic Chemistry, Faculty of Natural, Exact Sciences and Technology, University of Panama, Panama City 0824, Panama.

出版信息

J Fungi (Basel). 2021 Jul 17;7(7):570. doi: 10.3390/jof7070570.

Abstract

Among microorganisms, endophytic fungi are the least studied, but they have attracted attention due to their high biological diversity and ability to produce novel and bioactive secondary metabolites to protect their host plant against biotic and abiotic stress. These compounds belong to different structural classes, such as alkaloids, peptides, terpenoids, polyketides, and steroids, which could present significant biological activities that are useful for pharmacological or medical applications. Recent reviews on endophytic fungi have mainly focused on the production of novel bioactive compounds. Here, we focus on compounds produced by endophytic fungi, reported with uncommon bioactive structures, establishing the neighbor net and diversity of endophytic fungi. The review includes compounds published from January 2015 to December 2020 that were catalogued as unprecedented, rare, uncommon, or possessing novel structural skeletons from more than 39 different genera, with and being the most mentioned. They were reported as displaying cytotoxic, antitumor, antimicrobial, antiviral, or anti-inflammatory activity. The solid culture, using rice as a carbon source, was the most common medium utilized in the fermentation process when this type of compound was isolated.

摘要

在微生物中,内生真菌是研究最少的,但由于其高度的生物多样性以及产生新型生物活性次级代谢产物以保护宿主植物免受生物和非生物胁迫的能力,它们已引起了关注。这些化合物属于不同的结构类别,如生物碱、肽、萜类化合物、聚酮化合物和甾体,它们可能具有对药理学或医学应用有用的显著生物活性。最近关于内生真菌的综述主要集中在新型生物活性化合物的产生上。在这里,我们关注内生真菌产生的具有不常见生物活性结构的化合物,建立内生真菌的邻接网络和多样性。该综述涵盖了2015年1月至2020年12月发表的化合物,这些化合物被归类为前所未有的、罕见的、不常见的或具有来自39个以上不同属的新型结构骨架,其中曲霉属和青霉属被提及最多。据报道,它们具有细胞毒性、抗肿瘤、抗菌、抗病毒或抗炎活性。当分离这类化合物时,以大米作为碳源的固体培养是发酵过程中最常用的培养基。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fa4/8308102/f5c4ad6f599b/jof-07-00570-g001.jpg

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