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Linking species concepts to natural product discovery in the post-genomic era

机译:在后基因组时代将物种概念与天然产物发现联系起来

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摘要

A widely accepted species concept for bacteria has yet to be established. As a result, species designations are inconsistently applied and tied to what can be considered arbitrary metrics. Increasing access to DNA sequence data and clear evidence that bacterial genomes are dynamic entities that include large numbers of horizontally acquired genes have added a new level of insight to the ongoing species concept debate. Despite uncertainties over how to apply species concepts to bacteria, there is clear evidence that sequence-based approaches can be used to resolve cohesive groups that maintain the properties of species. This cohesion is clearly evidenced in the genus Salinispora, where three species have been discerned despite very close relationships based on 16S rRNA sequence analysis. The major phenotypic differences among the three species are associated with secondary metabolite production, which occurs in species-specific patterns. These patterns are maintained on a global basis and provide evidence that secondary metabolites have important ecological functions. These patterns also suggest that an effective strategy for natural product discovery is to target the cultivation of new Salinispora taxa. Alternatively, bioinformatic analyses of biosynthetic genes provide opportunities to predict secondary metabolite novelty and reduce the redundant isolation of well-known metabolites. Although much remains to be learned about the evolutionary relationships among bacteria and how fundamental units of diversity can be resolved, genus and species descriptions remain the most effective method of scientific communication.
机译:尚未建立广泛接受的细菌物种概念。结果,不一致地使用了物种名称,并将其与可以被认为是任意度量的事物联系在一起。越来越多地获取DNA序列数据,并清楚地表明细菌基因组是动态实体,其中包括大量水平获取的基因,这为正在进行的物种概念辩论增加了新的见识。尽管尚不确定如何将物种概念应用于细菌,但有明确证据表明基于序列的方法可用于解析保持物种特性的内聚基团。这种凝聚力在沙利氏菌属中得到了明显的证明,尽管根据16S rRNA序列分析发现它们之间有着非常密切的联系,但已经发现了三个物种。这三个物种之间的主要表型差异与次级代谢产物的产生有关,后者以物种特异性的模式发生。这些模式在全球范围内得到维持,并提供证据表明次生代谢产物具有重要的生态功能。这些模式还表明,天然产物发现的有效策略是针对新的盐藻分类群的培养。另外,生物合成基因的生物信息学分析提供了预测次生代谢产物新颖性并减少众所周知的代谢产物的多余分离的机会。尽管关于细菌之间的进化关系以及如何解决多样性的基本单位还有很多要学习的知识,但是对属和物种的描述仍然是最有效的科学交流方法。

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