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黄曲霉次级代谢产物的化学组成和生物合成机制:综述。

Chemical repertoire and biosynthetic machinery of the Aspergillus flavus secondary metabolome: A review.

机构信息

Center of Excellence in Mycotoxicology and Public Health, Faculty of Pharmaceutical Sciences, Ghent University, Ghent, Belgium.

Division of Pharmacy, Faculty of Medicine, University of Pristina, Pristina, Kosovo.

出版信息

Compr Rev Food Sci Food Saf. 2020 Nov;19(6):2797-2842. doi: 10.1111/1541-4337.12638. Epub 2020 Oct 20.

Abstract

Filamentous fungi represent a rich source of extrolites, including secondary metabolites (SMs) comprising a great variety of astonishing structures and interesting bioactivities. State-of-the-art techniques in genome mining, genetic manipulation, and secondary metabolomics have enabled the scientific community to better elucidate and more deeply appreciate the genetic and biosynthetic chemical arsenal of these microorganisms. Aspergillus flavus is best known as a contaminant of food and feed commodities and a producer of the carcinogenic family of SMs, aflatoxins. This fungus produces many SMs including polyketides, ribosomal and nonribosomal peptides, terpenoids, and other hybrid molecules. This review will discuss the chemical diversity, biosynthetic pathways, and biological/ecological role of A. flavus SMs, as well as their significance concerning food safety and security.

摘要

丝状真菌是外生代谢产物的丰富来源,包括具有各种惊人结构和有趣生物活性的次级代谢产物 (SMs)。基因组挖掘、遗传操作和次级代谢组学的最新技术使科学界能够更好地阐明和更深入地了解这些微生物的遗传和生物合成化学武器库。黄曲霉最常被认为是食品和饲料商品的污染物,也是致癌性 SMs(黄曲霉毒素)的生产者。该真菌产生许多 SMs,包括聚酮化合物、核糖体和非核糖体肽、萜类化合物和其他混合分子。本文将讨论黄曲霉 SMs 的化学多样性、生物合成途径和生物学/生态学作用,以及它们在食品安全和保障方面的重要性。

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