Pseudomonadaceae increased the tolerance of Listeria monocytogenes to sanitizers in multi-species biofilms

IF 4.5 1区 农林科学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Olena Voloshchuk , M. Laura Rolon , Katelyn V. Bartlett , Marysabel Mendez Acevedo , Luke F. LaBorde , Jasna Kovac
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Abstract

The persistence of the foodborne pathogen Listeria monocytogenes in food processing facilities may be facilitated by the formation of multi-species biofilms by environmental microbiota. This study aimed to determine whether multi-species biofilm formation results in an increased tolerance of L. monocytogenes in biofilms to the sanitizers benzalkonium chloride (BAC) and peroxyacetic acid (PAA) at concentrations commonly used in food processing facilities. Biofilms composed of microbiota previously shown to co-occur with L. monocytogenes in tree fruit packing facilities (i.e., Pseudomonadaceae, Xanthomonadaceae, Flavobacteriaceae, and Microbacteriaceae) were formed with L. monocytogenes in single- and multi-family assemblages. Multi-family biofilms were exposed to 250 or 500 ppm of PAA, or 200 ppm of BAC to determine the die-off kinetics of L. monocytogenes. Furthermore, the ability of a commercial biofilm remover to disrupt biofilms and inhibit bacteria in the formed single- and multi-family assemblage biofilms was assessed. The die-off kinetics of total bacteria and L. monocytogenes in biofilm assemblages throughout the exposure to a sanitizer was determined using the aerobic plate count and the most probable number methods, respectively. Biofilm assemblages that included Pseudomonadaceae resulted in an increased tolerance of L. monocytogenes to BAC and PAA compared to biofilm assemblages without Pseudomonadaceae. Further, the use of the biofilm remover significantly disrupted biofilms and reduced the concentration of L. monocytogenes in single- and multi-family biofilms by 5 or more logarithmic units. These findings highlight the need to improve the control of biofilm-forming microbiota in food processing facilities to mitigate the persistence of L. monocytogenes.
假单胞菌科增加了单核增生李斯特菌对多物种生物膜消毒剂的耐受性
环境微生物群形成的多物种生物膜可能促进了食品加工设施中食源性单核细胞增生李斯特菌的持续存在。本研究旨在确定多物种生物膜的形成是否会导致生物膜中单核细胞增生乳杆菌对食品加工设施中常用浓度的杀菌剂苯扎氯铵(BAC)和过氧乙酸(PAA)的耐受性增加。由以前在果树包装设施中与单核增生乳杆菌共生的微生物群(即假单胞菌科、黄杆菌科、黄杆菌科和微细菌科)组成的生物膜与单核增生乳杆菌在单科和多科组合中形成。多家族生物膜暴露于250或500 ppm的PAA,或200 ppm的BAC,以确定单核增生乳杆菌的死亡动力学。此外,商业生物膜去除剂破坏生物膜和抑制形成的单家族和多家族组合生物膜中的细菌的能力进行了评估。使用好氧平板计数法和最可能数法分别测定了暴露于消毒剂过程中生物膜组合中总细菌和单核增生乳杆菌的死亡动力学。与不含假单胞菌科的生物膜组合相比,含有假单胞菌科的生物膜组合导致单核增生乳杆菌对BAC和PAA的耐受性增加。此外,生物膜去除剂的使用显著地破坏了生物膜,使单科和多科生物膜中的单核增生乳杆菌浓度降低了5个或更多的对数单位。这些发现强调需要改善食品加工设施中形成生物膜的微生物群的控制,以减轻单核细胞增生乳杆菌的持久性。
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来源期刊
Food microbiology
Food microbiology 工程技术-生物工程与应用微生物
CiteScore
11.30
自引率
3.80%
发文量
179
审稿时长
44 days
期刊介绍: Food Microbiology publishes original research articles, short communications, review papers, letters, news items and book reviews dealing with all aspects of the microbiology of foods. The editors aim to publish manuscripts of the highest quality which are both relevant and applicable to the broad field covered by the journal. Studies must be novel, have a clear connection to food microbiology, and be of general interest to the international community of food microbiologists. The editors make every effort to ensure rapid and fair reviews, resulting in timely publication of accepted manuscripts.
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