Wang Binbin, Tan Xiqian, Du Renpeng, Zhao Fangkun, Zhang Lixia, Han Ye, Zhou Zhijiang
a School of Chemical Engineering and Technology , Tianjin University , Tianjin , PR China.
Prep Biochem Biotechnol. 2019;49(5):477-484. doi: 10.1080/10826068.2019.1587623. Epub 2019 Mar 21.
Polymicrobial biofilms often form on the surfaces of food-processing machinery, causing equipment damage and posing a contamination risk for the foods processed by the system. The composition of the microbial communities that make up these biofilms is largely unknown, especially in the dairy industry. To address this deficit, we investigated the bacterial composition of biofilms that form on the surfaces of equipment during dairy processing using Illumina MiSeq sequencing and culture-dependent methods. Illumina sequencing identified eight phyla, comprising six classes, ten orders, fifteen families, eighteen genera, and eighteen species. In contrast, only eight species were isolated from the same samples using the culture-based method. To determine the ability of the identified bacteria to form biofilms, biofilm formation analysis via crystal violet staining was performed. Five of the eight culturable species, , , , and , were able to form biofilms. Since most of the identified bacteria are potential food-borne or opportunistic pathogens, this study provides guidance for quality control of products produced in dairy processing facilities.
多微生物生物膜常常在食品加工机械表面形成,导致设备损坏,并对该系统加工的食品构成污染风险。构成这些生物膜的微生物群落组成在很大程度上尚不清楚,尤其是在乳制品行业。为了弥补这一不足,我们使用Illumina MiSeq测序和基于培养的方法,对乳制品加工过程中设备表面形成的生物膜的细菌组成进行了调查。Illumina测序鉴定出八个门,包括六个纲、十个目、十五个科、十八个属和十八个种。相比之下,使用基于培养的方法从相同样本中仅分离出八个种。为了确定已鉴定细菌形成生物膜的能力,通过结晶紫染色进行了生物膜形成分析。八个可培养种中的五个,即 、 、 、 和 ,能够形成生物膜。由于大多数已鉴定细菌是潜在的食源性病原体或机会致病菌,本研究为乳制品加工设施生产的产品的质量控制提供了指导。