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Direct spectroscopic (FTIR) detection of intraspecific binary contaminations in yeast cultures

机译:直接光谱(FTIR)检测酵母培养物中种内二元污染

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Fourier transform infrared spectroscopy has proved to be a good method to identify and characterize microorganisms. This technique has been proposed as a tool to determine the level of contamination in binary mixtures of strains belonging to different species and even to diverse kingdoms, showing a good linear relationship between spectral outputs and contamination levels. The monitoring of intraspecific contamination is a critical point in both laboratory practice and industrial monitoring, but it is challenged by the difficulty to discriminate between very similar cultures belonging to the same species. In this paper we considered binary intraspecific mixtures of strains belonging to three species (Saccharomyces cerevisiae, Debaryomyces hansenii and Rhodotorula minuta). Results showed that contaminated and pure cultures can be discriminated on the basis of their infrared spectra and that different spectral areas respond to the contamination according to the species under test. Moreover, some spectral areas change linearly with the increase of contaminants, giving the possibility of using this procedure for preliminary estimations of the contamination in addition to the even more important opportunity to indicate the presence of contaminants of the same species at low levels in fermentation cultures.
机译:傅里叶变换红外光谱已被证明是鉴定和表征微生物的好方法。已经提出将该技术用作确定属于不同物种甚至不同王国的菌株的二元混合物中污染水平的工具,显示出光谱输出与污染水平之间的良好线性关系。种内污染的监测是实验室实践和工业监测中的关键点,但是挑战在于难以区分属于同一物种的非常相似的培养物。在本文中,我们考虑了属于三个物种(酿酒酵母,汉逊德巴利酵母和小红假单胞菌)的菌株的二元种内混合物。结果表明,受污染和纯净的培养物可以根据其红外光​​谱进行区分,并且根据所测试的物种,不同的光谱区域对污染有反应。此外,某些光谱区域会随着污染物的增加而线性变化,除了使用更重要的机会表明发酵培养物中存在相同种类的污染物外,还可以使用此程序对污染物进行初步估计。 。

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