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首页> 外文期刊>Marine Drugs >Integrated Genomic and Metabolomic Approach to the Discovery of Potential Anti-Quorum Sensing Natural Products from Microbes Associated with Marine Samples from Singapore
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Integrated Genomic and Metabolomic Approach to the Discovery of Potential Anti-Quorum Sensing Natural Products from Microbes Associated with Marine Samples from Singapore

机译:综合基因组学和代谢组学方法,从与新加坡海洋样品相关的微生物中发现潜在的抗法定量感知天然产物

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With 70% of the Earth’s surface covered in water, the marine ecosystem offers immense opportunities for drug discovery and development. Due to the decreasing rate of novel natural product discovery from terrestrial sources in recent years, many researchers are beginning to look seaward for breakthroughs in new therapeutic agents. As part of an ongoing marine drug discovery programme in Singapore, an integrated approach of combining metabolomic and genomic techniques were initiated for uncovering novel anti-quorum sensing molecules from bacteria associated with subtidal samples collected in the Singapore Strait. Based on the culture-dependent method, a total of 102 marine bacteria strains were isolated and the identities of selected strains were established based on their 16S rRNA gene sequences. About 5% of the marine bacterial organic extracts showed quorum sensing inhibitory (QSI) activity in a dose-dependent manner based on the Pseudomonas aeruginosa QS reporter system. In addition, the extracts were subjected to mass spectrometry-based molecular networking and the genome of selected strains were analysed for known as well as new biosynthetic gene clusters. This study revealed that using integrated techniques, coupled with biological assays, can provide an effective and rapid prioritization of marine bacterial strains for downstream large-scale culturing for the purpose of isolation and structural elucidation of novel bioactive compounds.
机译:海洋生态系统覆盖了地球70%的表面,为药物发现和开发提供了巨大的机会。由于近年来从陆地来源发现的新型天然产物的比率下降,许多研究人员开始向海望去寻找新的治疗剂的突破。作为新加坡正在进行的海洋药物发现计划的一部分,启动了一种将代谢组学和基因组技术相结合的综合方法,以从与新加坡海峡采集的潮下标本相关的细菌中发现新型的抗群体感应分子。基于培养依赖性方法,共分离出102个海洋细菌菌株,并根据其16S rRNA基因序列确定了所选菌株的身份。基于铜绿假单胞菌QS报告系统,约5%的海洋细菌有机提取物以剂量依赖性方式显示群体感应抑制(QSI)活性。此外,将提取物进行基于质谱的分子网络分析,并对选定菌株的基因组进行分析,以了解已知的以及新的生物合成基因簇。这项研究表明,使用集成技术与生物测定相结合,可以为分离和结构阐明新型生物活性化合物的目的,为下游大规模培养提供快速有效的海洋细菌菌株优先次序。

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