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首页> 外文期刊>Applied and Environmental Microbiology >Phenotypic Characterization of Shewanella oneidensis MR-1 under Aerobic and Anaerobic Growth Conditions by Using Fourier Transform Infrared Spectroscopy and High-Performance Liquid Chromatography Analyses
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Phenotypic Characterization of Shewanella oneidensis MR-1 under Aerobic and Anaerobic Growth Conditions by Using Fourier Transform Infrared Spectroscopy and High-Performance Liquid Chromatography Analyses

机译:傅立叶变换红外光谱和高效液相色谱法分析有氧和无氧生长条件下沙瓦氏假单胞菌MR-1的表型特征

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Shewanella oneidensis is able to conserve energy for growth by reducing a wide variety of terminal electron acceptors during anaerobic respiration, including several environmentally hazardous pollutants. This bacterium employs various electron transfer mechanisms for anaerobic respiration, including cell-bound reductases and secreted redox mediators. The aim of this study was to develop rapid tools for profiling the key metabolic changes associated with these different growth regimes and physiological responses. Initial experiments focused on comparing cells grown under aerobic and anaerobic conditions. Fourier transform infrared (FT-IR) spectroscopy with cluster analysis showed that there were significant changes in the metabolic fingerprints of the cells grown under these two culture conditions. FT-IR spectroscopy clearly differentiated cells of S. oneidensis MR-1 cultured at various growth points and cells grown using different electron acceptors, resulting in different phenotypic trajectories in the cluster analysis. This growth-related trajectory analysis is applied successfully for the first time, here with FT-IR spectroscopy, to investigate the phenotypic changes in contrasting S. oneidensis cells. High-performance liquid chromatography (HPLC) was also used to quantify the concentrations of flavin compounds, which have been identified recently as extracellular redox mediators released by a range of Shewanella species. The partial least-squares regression (PLSR) multivariate statistical technique was combined with FT-IR spectroscopy to predict the concentrations of the flavins secreted by cells of S. oneidensis MR-1, suggesting that this combination could be used as a rapid alternative to conventional chromatographic methods for analysis of flavins in cell cultures. Furthermore, coupling of the FT-IR spectroscopy and HPLC techniques appears to offer a potentially useful tool for rapid characterization of the Shewanella cell metabolome in various process environments.
机译:通过在厌氧呼吸过程中减少多种末端电子受体(包括几种对环境有害的污染物),Shewanella oneidensis能够节省能源,以保持生长。该细菌利用各种电子转移机制进行厌氧呼吸,包括细胞结合的还原酶和分泌的氧化还原介体。这项研究的目的是开发快速的工具,以分析与这些不同的生长方式和生理反应相关的关键代谢变化。最初的实验着重于比较有氧和厌氧条件下生长的细胞。带有聚类分析的傅里叶变换红外(FT-IR)光谱表明,在这两种培养条件下生长的细胞的代谢指纹具有显着变化。 FT-IR光谱清楚地区分了在不同生长点培养的沙门氏菌MR-1细胞和使用不同电子受体生长的细胞,从而在聚类分析中产生了不同的表型轨迹。这种与生长有关的轨迹分析首次成功应用,在此通过FT-IR光谱法研究了对比拟南芥中S. oneidensis细胞的表型变化。高效液相色谱(HPLC)还用于量化黄素化合物的浓度,黄素化合物的浓度最近已被确定为一系列希瓦氏菌物种释放的细胞外氧化还原介体。偏最小二乘回归(PLSR)多元统计技术与FT-IR光谱法相结合来预测沙门氏菌MR-1细胞分泌的黄素浓度,表明该组合可作为常规药物的快速替代品色谱法分析细胞培养物中的黄素。此外,FT-IR光谱学和HPLC技术的结合似乎为在各种工艺环境中快速鉴定希瓦氏菌细胞代谢组提供了潜在有用的工具。

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