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首页> 外文期刊>Biotechnology Letters >A universal fixation method based on quaternary ammonium salts (RNAlater) for omics-technologies: Saccharomyces cerevisiae as a case study
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A universal fixation method based on quaternary ammonium salts (RNAlater) for omics-technologies: Saccharomyces cerevisiae as a case study

机译:一种基于季铵盐(RNAlater)的通用固定技术用于组学技术:以酿酒酵母为例

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摘要

Genomics, transcriptomics, proteomics and fluxomics are powerful omics-technologies that play a major role in today's research. For each of these techniques good sample quality is crucial. Major factors contributing to the quality of a sample is the actual sampling procedure itself and the way the sample is stored directly after sampling. It has already been described that RNAlater can be used to store tissues and cells in a way that the RNA quality and quantity are preserved. In this paper, we demonstrate that quaternary ammonium salts (RNAlater) are also suitable to preserve and store samples from Saccharomyces cerevisiae for later use with the four major omics-technologies. Moreover, it is shown that RNAlater also preserves the cell morphology and the potential to recover growth, permitting microscopic analysis and yeast cell culturing at a later stage.
机译:基因组学,转录组学,蛋白质组学和通量组学是功能强大的组学技术,在当今的研究中起着重要作用。对于每种技术,良好的样品质量至关重要。影响样品质量的主要因素是实际的采样程序本身以及采样后直接存储样品的方式。已经描述了RNAlater可以以保留RNA质量和数量的方式用于存储组织和细胞。在本文中,我们证明了季铵盐(RNAlater)也适用于保存和存储酿酒酵母的样品,以供以后与四种主要的组学技术一起使用。此外,已表明RNAlater还保留了细胞形态和恢复生长的潜力,从而允许在后期进行显微镜分析和酵母细胞培养。

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