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Monitoring Trehalose Uptake and Conversion by Single Bacteria using Laser Tweezers Raman Spectroscopy

机译:使用激光镊子拉曼光谱法监测单个细菌的海藻糖摄取和转化

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Having the ability to monitor metabolic activity at the scale of single bacterial cells noninvasively would enable us to follow changes in the distribution of activity in bacterial systems which is of major importance for topics such as integration of metabolism and development, metabolic engineering, microbial activity and drug resistance, cell-cell interactions, and quorum sensing. Here, we used laser tweezers Raman spectroscopy to monitor the in vivo real-time uptake and conversion of trehalose by single bacterial cells. This approach can be used for the quantitative determination of sugar uptake by a single bacterium and its metabolic response to the sugar application with time. We show that uptake of trehalose can be quantified in single living bacterial cells held in place by an optical trap while simultaneously collecting Raman spectra upon application of sugar to the medium. This technique yields real-time chemical information in a label-free manner, thus eliminating the limitations of toxicity of the isotopic probes common in studying transport processes. It can substitute the laborious and time-consuming analytical evaluation. Although the single-cell Raman spectroscopy method demonstrated here is focused on the study of trehalose uptake by Sinorhizobium meliloti, the demonstrated approach is applicable to many different organisms and carbohydrates in general.
机译:具有无创地监测单个细菌细胞规模的代谢活性的能力,将使我们能够追踪细菌系统中活性分布的变化,这对于诸如代谢与发育,代谢工程,微生物活性和耐药性,细胞间相互作用和群体感应。在这里,我们使用激光镊子拉曼光谱来监测单个细菌细胞对海藻糖的体内实时吸收和转化。该方法可用于定量确定单个细菌的糖摄入量及其随时间变化对糖的代谢反应。我们表明,海藻糖的摄入量可以在单个活细菌细胞中被光阱定量,同时在向培养基中添加糖后同时收集拉曼光谱。该技术以无标记的方式产生实时化学信息,从而消除了研究运输过程中常见的同位素探针的毒性限制。它可以替代费时费力的分析评估。尽管此处演示的单细胞拉曼光谱法侧重于苜蓿中华根瘤菌摄取海藻糖的研究,但已证明该方法通常适用于许多不同的生物和碳水化合物。

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