Cocconi Emanuela, Franceschini Barbara, Previdi Maria Paola
Stazione Sperimentale per l'Industria delle Conserve Alimentari (SSICA), Parma, Italy.
J Mass Spectrom. 2018 Sep;53(9):903-910. doi: 10.1002/jms.4270. Epub 2018 Aug 15.
In recent years, there have been some cases of alteration of tomato derivatives by Alicyclobacilli spp. The spoilage was reported by consumers who felt odors and abnormal tastes ("bad") of products. In this work, an untarget approach with Q-Exactive™ Quadrupole-Orbitrap Mass Spectrometer has been used to identify metabolites associated with the alteration of tomato puree by Alicyclobacillus bacteria. The study was carried out on tomato puree found positive for the presence of Alicyclobacillus spores. The germination and growth of native spores were induced through incubation at 65°C under static conditions for 5 days. For microbial concentration below 100 ufc/mL, negative growth was considered. The samples arising from incubation were submitted to UHPL-HRMS/MS analysis. To find compounds related to microbial growth, data obtained by UHPLC-MS/MS analysis were processed with Thermo Fisher Compound Discoverer™ 2.0 software. We compared samples grouped according to microbial growth: positive growth vs negative growth. Five compounds were identified and confirmed by analysis performed on authentic standards. To other compounds, we have assigned a putative identity. The HRMS approach using Q-Exactive™ Quadrupole-Orbitrap Mass Spectrometer has proven to be an important and powerful tool for identification of compounds which could be used as marker molecules in cases of suspected spoilage by Alicyclobacillus bacteria in tomato derivatives.
近年来,出现了一些环脂芽孢杆菌属改变番茄衍生物的案例。消费者报告了产品出现异味和异常味道(“变质”)的情况。在这项工作中,采用了一种使用Q-Exactive™四极杆-轨道阱质谱仪的非靶向方法,以鉴定与环脂芽孢杆菌改变番茄酱相关的代谢物。该研究是针对检测出环脂芽孢杆菌孢子呈阳性的番茄酱进行的。通过在65°C静态条件下孵育5天来诱导天然孢子的萌发和生长。对于微生物浓度低于100 ufc/mL的情况,视为生长阴性。将孵育产生的样品进行超高效液相色谱-高分辨质谱/质谱分析。为了找到与微生物生长相关的化合物,使用Thermo Fisher Compound Discoverer™ 2.0软件对超高效液相色谱-质谱/质谱分析获得的数据进行处理。我们比较了根据微生物生长分组的样品:生长阳性与生长阴性。通过对标准品进行分析鉴定并确认了5种化合物。对于其他化合物,我们赋予了一个假定的身份。使用Q-Exactive™四极杆-轨道阱质谱仪的高分辨质谱方法已被证明是一种重要且强大的工具,可用于鉴定在番茄衍生物疑似被环脂芽孢杆菌污染的情况下可作为标记分子的化合物。