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Imaging Bacterial Interspecies Chemical Interactions by Surface-Enhanced Raman Scattering

机译:通过表面增强拉曼散射的成像细菌间隔化学相互作用

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摘要

Microbes produce bioactive chemical compounds to influence the physiology and growth of their neighbors, and our understanding of their biological activities may be enhanced by our ability to visualize such molecules in vivo. We demonstrate here the application of surface-enhanced Raman scattering spectroscopy for simultaneous detection of quorum-sensing-regulated pyocyanin and violacein, produced respectively by Pseudomonas aeruginosa and Chromobacterium violaceum bacterial colonies, grown as a coculture on agar-based plasmonic substrates. Our plasmonic approach allowed us to visualize the expression and spatial distribution of the microbial metabolites in the coculture taking place as a result of interspecies chemical interactions. By combining surface-enhanced Raman scattering spectroscopy with analysis of gene expression we provide insight into the chemical interplay occurring between the interacting bacterial species. This highly sensitive, cost-effective, and easy to implement approach allows spatiotempural imaging of cellular metabolites in live microbial colonies grown on agar with no need for sample preparation, thereby providing a powerful tool for the analysis of microbial chemotypes.
机译:微生物产生生物活性化学化合物,以影响其邻居的生理和生长,我们对他们的生物活性的理解可以通过我们在体内可视化这些分子的能力来提高他们的生物活性。我们在此证明了表面增强的拉曼散射光谱分散用于同时检测Quorum-Sension-Conduly氏菌和virtorein,分别由假单胞菌铜绿假单胞菌和紫杉杆菌细菌菌落生长为基于琼脂的等离子体基材上的共罗布。我们的等离子体方法使我们能够在化学相互作用的结果中可视化与培养中的微生物代谢物中的微生物代谢物的表达和空间分布。通过将表面增强的拉曼散射光谱与基因表达分析组合,我们提供了对相互作用细菌种类之间发生的化学相的洞察力。这种高度敏感,成本效益和易于实施的方法,允许在琼脂上生长的活微生物菌落中细胞代谢物的时空成像,而无需样品制备,从而为分析微生物趋化物提供了强大的工具。

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