Genome sequencing has revealed that bacteria contain many more biosynthetic gene clusters than predicted based on the number of secondary metabolites discovered to date. While this biosynthetic reservoir has fostered interest in new tools for natural product discovery, there remains a gap between gene cluster detection and compound discovery. Here we apply molecular networking and the new concept of pattern-based genome mining to 35 Salinispora strains, including 30 for which draft genome sequences were either available or obtained for this study. The results provide a method to simultaneously compare large numbers of complex microbial extracts, which facilitated the identification of media components, known compounds and their derivatives, and new compounds that could be prioritized for structure elucidation. These efforts revealed considerable metabolite diversity and led to several molecular family-gene cluster pairings, of which the quinomycin-type depsipeptide retimycin A was characterized and linked to gene cluster NRPS40 using pattern-based bioinformatic approaches.
Molecular networking and pattern-based genome mining improves discovery of biosynthetic gene clusters and their products from Salinispora species.
分子网络和基于模式的基因组挖掘提高了对盐生孢子菌属物种生物合成基因簇及其产物的发现
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作者:Duncan Katherine R, Crüsemann Max, Lechner Anna, Sarkar Anindita, Li Jie, Ziemert Nadine, Wang Mingxun, Bandeira Nuno, Moore Bradley S, Dorrestein Pieter C, Jensen Paul R
| 期刊: | Chemistry & Biology | 影响因子: | 0.000 |
| 时间: | 2015 | 起止号: | 2015 Apr 23; 22(4):460-471 |
| doi: | 10.1016/j.chembiol.2015.03.010 | 研究方向: | 微生物学 |
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