Cocolin Luca, Rantsiou Kalliopi, Iacumin Lucilla, Zironi Roberto, Comi Giuseppe
Dipartimento Scienze degli Alimenti, Università degli studi di Udine, 33100 Udine, Italy.
Appl Environ Microbiol. 2004 Mar;70(3):1347-55. doi: 10.1128/AEM.70.3.1347-1355.2004.
In this paper we describe the development of a PCR protocol to specifically detect Brettanomyces bruxellensis and B. anomalus. Primers DB90F and DB394R, targeting the D1-D2 loop of the 26S rRNA gene, were able to produce amplicons only when the DNA from these two species were used. No amplification product was obtained when DNA from other Brettanomyces spp. or wine yeasts were used as the templates. The 305-bp product was subjected to restriction enzyme analysis with DdeI to differentiate between B. bruxellensis and B. anomalus, and each species could be identified on the basis of the different restriction profiles. After optimization of the method by using strains from international collections, wine isolates were tested with the method proposed. Total agreement between traditional identification and molecular identification was observed. The protocol developed was also used for direct detection of B. bruxellensis and B. anomalus in wines suspected to be spoiled by Brettanomyces spp. Application of culture-based and molecular methods led us to the conclusion that 8 of 12 samples were spoiled by B. bruxellensis. Results based on the application of molecular methods suggested that two of the eight positive samples had been infected more recently, since specific signals were obtained at both the DNA and RNA levels.
在本文中,我们描述了一种用于特异性检测布鲁塞尔酒香酵母和异常酒香酵母的聚合酶链式反应(PCR)方案的开发。靶向26S rRNA基因D1-D2环的引物DB90F和DB394R,仅在使用这两个物种的DNA时才能产生扩增子。当使用来自其他酒香酵母属物种或葡萄酒酵母的DNA作为模板时,未获得扩增产物。用DdeI对305bp的产物进行限制性酶切分析,以区分布鲁塞尔酒香酵母和异常酒香酵母,并且可以根据不同的限制性图谱鉴定每个物种。在使用来自国际菌种保藏中心的菌株对该方法进行优化后,用所提出的方法对葡萄酒分离株进行了测试。观察到传统鉴定和分子鉴定之间完全一致。所开发的方案还用于直接检测疑似被酒香酵母属物种污染的葡萄酒中的布鲁塞尔酒香酵母和异常酒香酵母。基于培养法和分子方法的应用,我们得出结论,12个样品中有8个被布鲁塞尔酒香酵母污染。基于分子方法的结果表明,8个阳性样品中有2个是最近才被感染的,因为在DNA和RNA水平上都获得了特异性信号。