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Comparative Genomics and Metabolomics in the Genus Nocardia

机译:诺卡雷迪属的比较基因组学与代谢组织

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Using automated genome analysis tools, it is often unclear to what degree genetic variability in homologous biosynthetic pathways relates to structural variation. This hampers strain prioritization and compound identification and can lead to overinterpretation of chemical diversity. Here, we assessed the metabolic potential of Nocardia , an underinvestigated actinobacterial genus that is known to comprise opportunistic human pathogens. Our analysis revealed a plethora of putative biosynthetic gene clusters of various classes, including polyketide, nonribosomal peptide, and terpenoid pathways. Furthermore, we used the highly conserved biosynthetic pathway for nocobactin-like siderophores to investigate how gene cluster differences correlate to structural differences in the produced compounds. Sequence similarity networks generated by BiG-SCAPE (Biosynthetic Gene Similarity Clustering and Prospecting Engine) showed the presence of several distinct gene cluster families. Metabolic profiling of selected Nocardia strains using liquid chromatography-mass spectrometry (LC-MS) metabolomics data, nuclear magnetic resonance (NMR) spectroscopy, and GNPS (Global Natural Product Social molecular networking) revealed that nocobactin-like biosynthetic gene cluster (BGC) families above a BiG-SCAPE threshold of 70% can be assigned to distinct structural types of nocobactin-like siderophores. IMPORTANCE Our work emphasizes that Nocardia represent a prolific source for natural products rivaling better-characterized genera such as Streptomyces or Amycolatopsis . Furthermore, we showed that large-scale analysis of biosynthetic gene clusters using similarity networks with high stringency allows the distinction and prediction of natural product structural variations. This will facilitate future genomics-driven drug discovery campaigns.
机译:使用自动基因组分析工具,往往不清楚同源生物合成途径的程度遗传变异涉及结构性变化。这堵塞了​​应变优先级和复合鉴定,并可以导致化学多样性过度诠释。在这里,我们评估了Nocardia的代谢潜力,这是已知包括机会的人类病原体的被取消的肌动脉内属。我们的分析揭示了各种阶级的推定生物合成基因簇,包括聚酮,非纤维素肽和三萜类化途径。此外,我们使用了高度保守的生物合成途径,用于脱像蛋白的铁酰胺型途径,研究基因簇差异如何与所产生的化合物的结构差异相关。由大景观(生物合成基因相似性聚类和勘探发动机)产生的序列相似网络显示出几种不同的基因簇系列。使用液相色谱 - 质谱(LC-MS)代谢组数据,核磁共振(NMR)光谱和GNPS(全球天然产物社会分子网络)的所选Nocardia菌株的代谢分析显示Nocobactin样生物合成基因簇(BGC)家族高于70%的大胞外阈值可以分配给不同的结构类型的诺贝皮蛋白样散发体。重要性我们的工作强调Nocardia代表了竞争更新的属性的天然产物的多产来源,例如链霉菌或杏仁糖尿病。此外,我们表明,使用具有高严格性的相似性网络的生物合成基因集群的大规模分析允许区分和预测天然产品结构变化。这将促进未来的基因组学推动的药物发现活动。

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