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Untargeted Metabolomics Approach in Halophiles: Understanding the Biodeterioration Process of Building Materials

机译:嗜盐菌的非靶向代谢组学方法:了解建筑材料的生物降解过程

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摘要

The aim of the study was to explore the halophile metabolome in building materials using untargeted metabolomics which allows for broad metabolome coverage. For this reason, we used high-performance liquid chromatography interfaced to high-resolution mass spectrometry (HPLC/HRMS). As an alternative to standard microscopy techniques, we introduced pioneering Coherent Anti-stokes Raman Scattering Microscopy (CARS) to non-invasively visualize microbial cells. Brick samples saturated with salt solution (KCl, NaCl (two salinity levels), MgSO4, Mg(NO3)2), were inoculated with the mixture of preselected halophilic microorganisms, i.e., bacteria: Halobacillus styriensis, Halobacillus naozhouensis, Halobacillus hunanensis, Staphylococcus succinus, Marinococcus halophilus, Virgibacillus halodenitryficans, and yeast: Sterigmatomyces halophilus and stored at 28°C and 80% relative humidity for a year. Metabolites were extracted directly from the brick samples and measured via HPLC/HRMS in both positive and negative ion modes. Overall, untargeted metabolomics allowed for discovering the interactions of halophilic microorganisms with buildings materials which together with CARS microscopy enabled us to elucidate the biodeterioration process caused by halophiles. We observed that halophile metabolome was differently affected by different salt solutions. Furthermore, we found indications for haloadaptive strategies and degradation of brick samples due to microbial pigment production as a salt stress response. Finally, we detected changes in lipid content related to changes in the structure of phospholipid bilayers and membrane fluidity.
机译:这项研究的目的是使用非目标代谢组学研究建筑材料中的嗜盐菌代谢组,该组可以广泛地覆盖代谢组。因此,我们使用了高效液相色谱仪和高分辨率质谱仪(HPLC / HRMS)。作为标准显微镜技术的替代方法,我们引入了开创性的相干抗斯托克斯拉曼散射显微镜(CARS)来无创地观察微生物细胞。将盐溶液(KCl,NaCl(两个盐度),MgSO4,Mg(NO3)2)饱和的砖样品接种预选的嗜盐微生物的混合物,即细菌:stylobensis styriensis,Nazhouzhou Halobacillus hunanensis,Holacoillus hunanensis,Staphylococcus succinuss ,嗜盐菌球菌,嗜盐菌维氏芽孢杆菌和酵母:嗜盐链霉菌,并在28°C和80%相对湿度下存储一年。代谢物直接从砖样品中提取,并通过HPLC / HRMS在正离子和负离子模式下进行测量。总体而言,无针对性的代谢组学研究发现了嗜盐微生物与建筑材料的相互作用,再加上CARS显微镜技术,我们得以阐明了由嗜盐菌引起的生物降解过程。我们观察到嗜盐菌代谢组受不同盐溶液的影响不同。此外,我们发现了适应盐处理策略以及由于微生物色素产生而导致砖样品降解的适应症,这是盐胁迫的反应。最后,我们检测到脂质含量的变化与磷脂双层结构和膜流动性的变化有关。

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