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Microbial genomics for the improvement of natural product discovery

机译:改善天然产物发现的微生物基因组学

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The quest for the discovery of novel natural products has entered a new chapter with the enormous wealth of genetic data that is now available. This information has been exploited by using whole-genome sequence mining to uncover cryptic pathways, or biosynthetic pathways for previously undetected metabolites. Alternatively, using known paradigms for secondary metabolite biosynthesis, genetic information has been 'fished out' of DNA libraries resulting in the discovery of new natural products and isolation of gene clusters for known metabolites. Novel natural products have been discovered by expressing genetic data from uncultured organisms or difficult-to-manipulate strains in heterologous hosts. Furthermore, improvements in heterologous expression have not only helped to identify gene clusters but have also made it easier to manipulate these genes in order to generate new compounds. Finally, and perhaps the most crucial aspect of the efficient and prosperous use of the abundance of genetic information, novel enzyme chemistry continues to be discovered, which has aided our understanding of how natural products are biosynthesized de novo, and enabled us to rework the current paradigms for natural product biosynthesis.
机译:寻找新的天然产物的探索进入了一个新的篇章,它拥有大量可用的遗传数据。通过使用全基因组序列挖掘来发现以前未发现的代谢物的秘密途径或生物合成途径,已利用了该信息。或者,使用已知的范例进行次级代谢物的生物合成,遗传信息已从DNA库中“捕获”,从而发现了新的天然产物并分离了已知代谢物的基因簇。通过在异源宿主中表达未培养生物或难于操纵的菌株的遗传数据,发现了新型天然产物。此外,异源表达的改进不仅有助于鉴定基因簇,而且还使其更易于操纵这些基因以产生新化合物。最后,也许是有效和繁荣使用大量遗传信息的最关键方面,新的酶化学继续被发现,这有助于我们了解天然产物是如何从头开始生物合成的,并使我们能够对当前的产物进行改造。天然产物生物合成的范例。

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