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Metabolomic Tools for Secondary Metabolite Discovery from Marine Microbial Symbionts

机译:用于从海洋微生物共生物中发现次级代谢物的代谢组学工具

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Marine invertebrate-associated symbiotic bacteria produce a plethora of novel secondary metabolites which may be structurally unique with interesting pharmacological properties. Selection of strains usually relies on literature searching, genetic screening and bioactivity results, often without considering the chemical novelty and abundance of secondary metabolites being produced by the microorganism until the time-consuming bioassay-guided isolation stages. To fast track the selection process, metabolomic tools were used to aid strain selection by investigating differences in the chemical profiles of 77 bacterial extracts isolated from cold water marine invertebrates from Orkney, Scotland using liquid chromatography-high resolution mass spectrometry (LC-HRMS) and nuclear magnetic resonance (NMR) spectroscopy. Following mass spectrometric analysis and dereplication using an Excel macro developed in-house, principal component analysis (PCA) was employed to differentiate the bacterial strains based on their chemical profiles. NMR 1H and correlation spectroscopy (COSY) were also employed to obtain a chemical fingerprint of each bacterial strain and to confirm the presence of functional groups and spin systems. These results were then combined with taxonomic identification and bioassay screening data to identify three bacterial strains, namely Bacillus sp. 4117, Rhodococcus sp. ZS402 and Vibrio splendidus strain LGP32, to prioritize for scale-up based on their chemically interesting secondary metabolomes, established through dereplication and interesting bioactivities, determined from bioassay screening.
机译:海洋无脊椎动物相关的共生细菌会产生大量新的次级代谢产物,这些代谢产物在结构上可能具有独特的有趣的药理特性。菌株的选择通常取决于文献检索,遗传筛选和生物活性结果,通常不考虑微生物所产生的化学新奇性和次生代谢产物的丰度,直到耗时的生物测定指导的分离阶段为止。为了快速跟踪选择过程,使用了代谢组学工具,通过使用液相色谱-高分辨率质谱(LC-HRMS)和质谱分析了从苏格兰奥克尼市的冷水海洋无脊椎动物中分离出的77种细菌提取物的化学谱差异,从而辅助了菌株的选择。核磁共振(NMR)光谱。使用内部开发的Excel宏进行质谱分析和重复复制后,采用主成分分析(PCA)根据细菌的化学特征来区分细菌菌株。还使用NMR 1 H和相关光谱法(COSY)获得每种细菌菌株的化学指纹,并确认官能团和自旋系统的存在。然后将这些结果与分类学鉴定和生物测定筛选数据相结合,以鉴定三种细菌菌株,即芽孢杆菌。 Rhodococcus sp.4117。 ZS402和Splendidus菌株LGP32可以根据其化学上有趣的次要代谢组(通过重复测定和有趣的生物活性而建立)确定扩大规模的优先顺序,这些代谢组是根据生物测定筛选确定的。

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