Arid
DOI10.3389/fmicb.2017.01284
Dual Induction of New Microbial Secondary Metabolites by Fungal Bacterial Co-cultivation
Wakefield, Jennifer1; Hassan, Hossam M.2; Jaspars, Marcel1; Ebel, Rainer1; Rateb, Mostafa E.3
通讯作者Rateb, Mostafa E.
来源期刊FRONTIERS IN MICROBIOLOGY
ISSN1664-302X
出版年2017
卷号8
英文摘要

The frequent re-isolation of known compounds is one of the major challenges in drug discovery. Many biosynthetic genes are not expressed under standard culture conditions, thus limiting the chemical diversity of microbial compounds that can be obtained through fermentation. On the other hand, the competition during co-cultivation of two or more different microorganisms in most cases leads to an enhanced production of constitutively present compounds or an accumulation of cryptic compounds that are not detected in axenic cultures of the producing strain under different fermentation conditions. Herein, we report the dual induction of newly detected bacterial and fungal metabolites by the co-cultivation of the marine-derived fungal isolate Aspergillus fumigatus MR2012 and two hyper-arid desert bacterial isolates Streptomyces leeuwenhoekii strain C34 and strain C58. Co-cultivation of the fungal isolate MR2012 with the bacterial strain C34 led to the production of luteoride D, a new luteoride derivative and pseurotin G, a new pseurotin derivative in addition to the production of terezine D and 11-O-methylpseurotin A which were not traced before from this fungal strain under different fermentation conditions. In addition to the previously detected metabolites in strain C34, the lasso peptide chaxapeptin was isolated under co-culture conditions. The gene cluster for the latter compound had been identified through genome scanning, but it had never been detected before in the axenic culture of strain C34. Furthermore, when the fungus MR2012 was co-cultivated with the bacterial strain C58, the main producer of chaxapeptin, the titre of this metabolite was doubled, while additionally the bacterial metabolite pentalenic acid was detected and isolated for the first time from this strain, whereas the major fungal metabolites that were produced under axenic culture were suppressed. Finally, fermentation of the MR2012 by itself led to the isolation of the new diketopiperazine metabolite named brevianamide X.


英文关键词microbial co-cultivation Aspergillus fumigatus Streptomyces leeuwenhoekii pseurotin G luteoride D brevianamide X
类型Article
语种英语
国家Scotland ; Egypt
收录类别SCI-E
WOS记录号WOS:000405235500001
WOS关键词CHEMICAL DIVERSITY ; ASPERGILLUS-FUMIGATUS ; NATURAL-PRODUCT ; DRUG DISCOVERY ; STREPTOMYCES SP ; ATACAMA DESERT ; COCULTURE ; NIDULANS ; DERIVATIVES ; CULTURE
WOS类目Microbiology
WOS研究方向Microbiology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/199053
作者单位1.Univ Aberdeen, Dept Chem, Marine Biodiscovery Ctr, Aberdeen, Scotland;
2.Beni Suef Univ, Fac Pharm, Pharmacognosy Dept, Bani Suwayf, Egypt;
3.Univ West Scotland, Sch Sci & Sport, Paisley, Renfrew, Scotland
推荐引用方式
GB/T 7714
Wakefield, Jennifer,Hassan, Hossam M.,Jaspars, Marcel,et al. Dual Induction of New Microbial Secondary Metabolites by Fungal Bacterial Co-cultivation[J],2017,8.
APA Wakefield, Jennifer,Hassan, Hossam M.,Jaspars, Marcel,Ebel, Rainer,&Rateb, Mostafa E..(2017).Dual Induction of New Microbial Secondary Metabolites by Fungal Bacterial Co-cultivation.FRONTIERS IN MICROBIOLOGY,8.
MLA Wakefield, Jennifer,et al."Dual Induction of New Microbial Secondary Metabolites by Fungal Bacterial Co-cultivation".FRONTIERS IN MICROBIOLOGY 8(2017).
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