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The sources and transmission routes of microbial populations throughout a meat processing facility

Food Science and Technology

The sources and transmission routes of microbial populations throughout a meat processing facility

B. Zwirzitz, S. U. Wetzels, et al.

This study reveals the alarming reality of microbial food spoilage in pork-processing plants, showcasing how high-throughput sequencing can trace the contamination back to specific sources, including something as mundane as employee gloves. Conducted by a team of experts, including Benjamin Zwirzitz and Stefanie U. Wetzels, the findings underscore the critical need for robust food safety measures.... show more
Abstract
Microbial food spoilage is responsible for a considerable amount of waste and can cause food-borne diseases in humans, particularly in immunocompromised individuals and children. Therefore, preventing microbial food spoilage is a major concern for health authorities, regulators, consumers, and the food industry. However, the contamination of food products is difficult to control because there are several potential sources during production, processing, storage, distribution, and consumption, where microorganisms come in contact with the product. Here, we use high-throughput full-length 16S rRNA gene sequencing to provide insights into bacterial community structure throughout a pork-processing plant. Specifically, we investigated what proportion of bacteria on meat are presumptively not animal-associated and are therefore transferred during cutting via personnel, equipment, machines, or the slaughter environment. We then created a facility-specific transmission map of bacterial flow, which predicted previously unknown sources of bacterial contamination. This allowed us to pinpoint specific taxa to particular environmental sources and provide the facility with essential information for targeted disinfection. For example, Moraxella spp., a prominent meat spoilage organism, which was one of the most abundant amplicon sequence variants (ASVs) detected on the meat, was most likely transferred from the gloves of employees, a railing at the classification step, and the polishing tunnel whips. Our results suggest that high-throughput full-length 16S rRNA gene sequencing has great potential in food monitoring applications.
Publisher
npj Biofilms and Microbiomes
Published On
Jul 10, 2020
Authors
Benjamin Zwirzitz, Stefanie U. Wetzels, Emmanuel D. Dixon, Beatrix Stessl, Andreas Zaiser, Isabel Rabanser, Sarah Thalguter, Beate Pinior, Franz-Ferdinand Roch, Cameron Strachan, Jürgen Zanghellini, Monika Dzieciol, Martin Wagner, Evelyne Selberherr
Tags
microbial spoilage
food safety
16S rRNA sequencing
bacterial community
contamination sources
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