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日常卫生对新鲜农产品加工设施中微生物组的影响。

Impact of routine sanitation on the microbiomes in a fresh produce processing facility.

机构信息

Environmental Microbiology and Food Safety Laboratory, USDA ARS, Beltsville, MD, United States; Eastern Shore Agricultural Research and Extension Center, Virginia Tech, Painter, VA 23420, United States.

Center for Food Safety and Applied Nutrition, US Food and Drug Administration, College Park, MD 20740, United States.

出版信息

Int J Food Microbiol. 2019 Apr 2;294:31-41. doi: 10.1016/j.ijfoodmicro.2019.02.002. Epub 2019 Feb 2.

Abstract

Indigenous bacterial populations in fresh-cut produce processing facilities can have a profound effect on the survival and proliferation of inadvertently contaminating foodborne pathogens. In this study, environmental samples were collected from a variety of Zone 3 sites in a processing plant before and after daily routine sanitation. Viable mesophilic aerobic bacteria population was evaluated using both culturing method and quantitative real-time PCR (qPCR) after propidium monoazide treatment. Zone 3 surface microbiota were analyzed using 16S rRNA gene amplicon sequencing with the Qiime2 bioinformatic pipeline. Over 8000 bacterial species across 4 major phyla were identified in Zone 3 microbiomes in the processing facility. Overall, effective bacterial reduction was observed at the sampling sites on the production floor, while sanitation effect on peripheral surfaces was less evident. Effective sanitation resulted in both quantitative and qualitive shifts of Zone 3 microbiota. Several species were highly abundant at multiple sample sites for both winter and summer samplings. Based on the spatial and temporal distribution of the most abundant species, a Zone 3 core microbiome in the processing facility was tentatively described to included Cupriavidus sp., Pseudomonas sp., Ralstonia sp., Arthrobacter psychrolactophilus, Pseudomonas veronii, Stenotrophomonas sp., and an unknown species of the family Enterobacteriaceae.

摘要

新鲜农产品加工设施中的土著细菌种群会对无意中污染的食源性病原体的存活和增殖产生深远影响。在这项研究中,在每日例行卫生清洁前后,从加工厂的多个 3 区地点收集环境样本。使用培养法和经吖啶橙处理后的实时定量 PCR(qPCR) 评估可培养的嗜温需氧细菌种群。使用 Qiime2 生物信息学管道对 3 区表面微生物组进行 16S rRNA 基因扩增子测序分析。在加工设施的 3 区微生物组中鉴定出了超过 4 个主要门的 8000 多种细菌。总体而言,在生产车间的采样点观察到有效的细菌减少,而外围表面的卫生效果则不太明显。有效的卫生清洁导致 3 区微生物群发生了数量和质量的变化。在冬季和夏季采样的多个样本点上,有几个物种高度丰富。基于最丰富物种的时空分布,初步描述了加工设施中的 3 区核心微生物组,包括 Cupriavidus sp.、Pseudomonas sp.、Ralstonia sp.、Arthrobacter psychrolactophilus、Pseudomonas veronii、 Stenotrophomonas sp. 和肠杆菌科的一个未知种。

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