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通过宏基因组学探索和利用微生物多样性进行天然产物药物发现。

Exploring and exploiting microbial diversity through metagenomics for natural product drug discovery.

机构信息

Key Laboratory of Marine Bio-resources Sustainable Utilization & Guangdong Key Laboratory of Marine Materia Medica, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China.

出版信息

Curr Top Med Chem. 2009;9(16):1525-35. doi: 10.2174/156802609789909849.

Abstract

Microorganisms of millions species exist in every corner of the Earth, and form a dynamic genetic reservoir that are not clearly revealed and categorized due to barrier in current cultivation technology. Their applications in biomedical and environmental aspects are more than satisfactory. However, the situation has drastically changed during the turn of the century because of the rapid development of phylogenetic studies based on rRNA sequencing independent of standard laboratory cultivation. More recently, high throughput sequencing technology which enables direct sequencing of community DNA for metagenomic analyses are making a direct impact on our understanding of microbial diversity, ecology, and secondary metabolism. In this review, we highlight some recent progress and innovation on metagenomic research with an emphasis on natural product drug discovery. The rapid path of accumulating decoded metagenomics would be an efficient guide on direct access to the genomes of numerous non-culturable microorganisms for their genomic diversity and associated chemical prosperity for potential medicinal applications.

摘要

数以百万计的物种微生物存在于地球的每一个角落,它们形成了一个动态的遗传库,由于当前培养技术的障碍,这些遗传库并没有被清晰地揭示和分类。它们在生物医学和环境方面的应用非常令人满意。然而,这种情况在本世纪之交发生了巨大的变化,这要归功于基于 rRNA 测序的系统发育研究的快速发展,而无需标准的实验室培养。最近,高通量测序技术使得对群落 DNA 进行直接测序进行宏基因组分析成为可能,这直接影响了我们对微生物多样性、生态学和次生代谢的理解。在这篇综述中,我们重点介绍了一些最新的宏基因组研究进展和创新,特别强调了天然产物药物发现。积累解码宏基因组的快速途径将是一个有效的指导,直接访问众多不可培养微生物的基因组,以了解它们的基因组多样性和相关的化学繁荣,从而为潜在的医学应用提供可能性。

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