以前未培养的海洋细菌与新型生物碱生产有关。

Eun Ju Choi, Sang-Jip Nam, Lauren Paul, Deanna Beatty, Christopher A Kauffman, Paul R Jensen, William Fenical
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引用次数: 36

摘要

低营养培养基和较长的培养时间促进了20种分类上不同的革兰氏阴性海洋细菌在拟杆菌门和变形菌门的培养。这些菌株包括多达三个新科,其中包括仅使用非培养技术观察到的分支成员。对代表细胞体目两个新科的类型菌株进行化学研究,分离出9种新的生物碱次级代谢物,可分为4个不同的结构类,包括氮平酮类、氮嘧啶类、喹诺酮类和吡嗪酮类。这些化合物中有几种具有抗菌特性,从结构上看,似乎是由基于氨基酸的生物合成途径产生的。我们的研究结果表明,相对简单的培养技术可以导致分离出能够产生具有抗菌活性的生物碱次生代谢物的新细菌分类群。这些发现支持继续投资栽培技术作为发现天然产品的方法。
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Previously Uncultured Marine Bacteria Linked to Novel Alkaloid Production.

Low-nutrient media and long incubation times facilitated the cultivation of 20 taxonomically diverse Gram-negative marine bacteria within the phyla Bacteroidetes and Proteobacteria. These strains comprise as many as three new families and include members of clades that had only been observed using culture-independent techniques. Chemical studies of the type strains representing two new families within the order Cytophagales led to the isolation of nine new alkaloid secondary metabolites that can be grouped into four distinct structure classes, including azepinones, aziridines, quinolones, and pyrazinones. Several of these compounds possess antibacterial properties and appear, on structural grounds, to be produced by amino acid-based biosynthetic pathways. Our results demonstrate that relatively simple cultivation techniques can lead to the isolation of new bacterial taxa that are capable of the production of alkaloid secondary metabolites with antibacterial activities. These findings support continued investment in cultivation techniques as a method for natural product discovery.

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来源期刊
Chemistry & biology
Chemistry & biology 生物-生化与分子生物学
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审稿时长
4-8 weeks
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