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FTIR spectroscopic metabolome analysis of lyophilized and fresh Saccharomyces cerevisiae yeast cells

机译:冻干和新鲜酿酒酵母酵母细胞的FTIR光谱代谢组学分析

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The yeast Saccharomyces cerevisiae is widely used as a biological eukaryotic model and also serves as a production organism in biotechnology. One of the methods used to avoid degradation of the yeast cell content is lyophilization. The use of lyophilized yeast cells has several advantages over fresh ones: samples can be easily transported and/or stored and variations of their metabolomic profiles do not occur during transport or storage. Fourier transform infrared (FTIR) spectroscopy is one of the most emerging approaches in modern biology that permits operation on very small quantities of whole cells without the need for extractions or purifications. This technique is very sensitive and not only allows the discrimination between different cell genotypes but also between different growth conditions. FTIR spectra provide interesting data on the metabolic status of the whole cell. Modern multivariate data processing was applied to analyse live fresh or lyophilized S. cerevisiae cells from different growth media. This study clearly demonstrates that yeast cells coming from an identical biological medium can be used indiscriminately for FTIR analysis whether they are analysed directly as live fresh cells or after lyophilization which is a freeze-drying process. Moreover, FTIR data obtained using lyophilized cells showed less variability.
机译:酵母酿酒酵母被广泛用作生物真核生物模型,并且还用作生物技术中的生产生物。避免酵母细胞含量降解的方法之一是冻干。冻干酵母细胞的使用与新鲜酵母细胞相比具有几个优点:样品易于运输和/或存储,并且在运输或存储过程中不会发生代谢组学谱的变化。傅里叶变换红外(FTIR)光谱是现代生物学中最新兴的方法之一,它允许对非常少量的全细胞进行操作而无需提取或纯化。该技术非常敏感,不仅可以区分不同细胞基因型,还可以区分不同的生长条件。 FTIR光谱提供了有关整个细胞代谢状态的有趣数据。现代多元数据处理用于分析来自不同生长培养基的新鲜或冻干的酿酒酵母活细胞。这项研究清楚地表明,来自同一个生物培养基的酵母细胞可以不分青红皂白地用于FTIR分析,无论它们是直接作为活的新鲜细胞进行分析还是作为冻干过程冻干后进行分析。此外,使用冻干细胞获得的FTIR数据显示出较小的变异性。

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