Yakult Central Institute for Microbiological Research, 1796 Yaho, Kunitachi, Tokyo 186-8650, Japan.
Yakult Central Institute for Microbiological Research, 1796 Yaho, Kunitachi, Tokyo 186-8650, Japan.
Int J Food Microbiol. 2014 May 16;178:107-12. doi: 10.1016/j.ijfoodmicro.2014.03.008. Epub 2014 Mar 16.
Yeast contamination is a serious problem in the food industry and a major cause of food spoilage. Several yeasts, such as Filobasidiella neoformans, which cause cryptococcosis in humans, are also opportunistic pathogens, so a simple and rapid method for monitoring yeast contamination in food is essential. Here, we developed a simple and rapid method that utilizes loop-mediated isothermal amplification (LAMP) for the detection of F. neoformans. A set of five specific LAMP primers was designed that targeted the 5.8S-26S rDNA internal transcribed spacer 2 region of F. neoformans, and the primer set's specificity was confirmed. In a pure culture of F. neoformans, the LAMP assay had a lower sensitivity threshold of 10(2)cells/mL at a runtime of 60min. In a probiotic dairy product artificially contaminated with F. neoformans, the LAMP assay also had a lower sensitivity threshold of 10(2)cells/mL, which was comparable to the sensitivity of a quantitative PCR (qPCR) assay. We also developed a simple two-step method for the extraction of DNA from a probiotic dairy product that can be performed within 15min. This method involves initial protease treatment of the test sample at 45°C for 3min followed by boiling at 100°C for 5min under alkaline conditions. In a probiotic dairy product artificially contaminated with F. neoformans, analysis by means of our novel DNA extraction method followed by LAMP with our specific primer set had a lower sensitivity threshold of 10(3)cells/mL at a runtime of 60min. In contrast, use of our novel method of DNA extraction followed by qPCR assay had a lower sensitivity threshold of only 10(5)cells/mL at a runtime of 3 to 4h. Therefore, unlike the PCR assay, our LAMP assay can be used to quickly evaluate yeast contamination and is sensitive even for crude samples containing bacteria or background impurities. Our study provides a powerful tool for the primary screening of large numbers of food samples for yeast contamination.
酵母污染是食品工业中的一个严重问题,也是食品变质的主要原因。一些酵母,如新型隐球菌,会导致人类 cryptococcosis,也是机会性病原体,因此,监测食品中酵母污染的简单快速方法是必不可少的。在这里,我们开发了一种利用环介导等温扩增(LAMP)检测新型隐球菌的简单快速方法。设计了一组针对新型隐球菌 5.8S-26S rDNA 内转录间隔区 2 区的五个特异性 LAMP 引物,确认了引物的特异性。在新型隐球菌的纯培养物中,LAMP 检测法的灵敏度阈值为 10(2)个细胞/mL,运行时间为 60min。在人工污染新型隐球菌的益生菌乳制品中,LAMP 检测法的灵敏度阈值也为 10(2)个细胞/mL,与定量 PCR(qPCR)检测法的灵敏度相当。我们还开发了一种从益生菌乳制品中提取 DNA 的简单两步法,可在 15min 内完成。该方法包括在 45°C 下对测试样品进行初始蛋白酶处理 3min,然后在碱性条件下煮沸 100°C 5min。在人工污染新型隐球菌的益生菌乳制品中,通过我们的新型 DNA 提取方法和特异性引物组进行 LAMP 分析,运行时间为 60min 时,灵敏度阈值为 10(3)个细胞/mL。相比之下,使用我们的新型 DNA 提取方法和 qPCR 检测法,运行时间为 3 至 4h 时,灵敏度阈值仅为 10(5)个细胞/mL。因此,与 PCR 检测法不同,我们的 LAMP 检测法可用于快速评估酵母污染,即使是含有细菌或背景杂质的粗样品也很敏感。我们的研究为快速筛选大量食品样品中的酵母污染提供了有力工具。