Meat Processing Plant Microbiome and Contamination Patterns of Cold-Tolerant Bacteria Causing Food Safety and Spoilage Risks in the Manufacture of Vacuum-Packaged Cooked Sausages

食物腐败 食品科学 明串珠菌 生物 肉类腐败 食品微生物学 微生物群 细菌 污染 泛菌 食品安全 食品加工 真空包装 微生物学 乳酸菌 16S核糖体RNA 生态学 发酵 生物信息学 遗传学
作者
Jenni Hultman,Riitta Rahkila,Jamshaid Ali,Juho Rousu,Johanna Björkroth
出处
期刊:Applied and Environmental Microbiology [American Society for Microbiology]
卷期号:81 (20): 7088-7097 被引量:122
标识
DOI:10.1128/aem.02228-15
摘要

ABSTRACT Refrigerated food processing facilities are specific man-made niches likely to harbor cold-tolerant bacteria. To characterize this type of microbiota and study the link between processing plant and product microbiomes, we followed and compared microbiota associated with the raw materials and processing stages of a vacuum-packaged, cooked sausage product affected by a prolonged quality fluctuation with occasional spoilage manifestations during shelf life. A total of 195 samples were subjected to culturing and amplicon sequence analyses. Abundant mesophilic psychrotrophs were detected within the microbiomes throughout the different compartments of the production plant environment. However, each of the main genera of food safety and quality interest, e.g., Leuconostoc , Brochothrix , and Yersinia , had their own characteristic patterns of contamination. Bacteria from the genus Leuconostoc , commonly causing spoilage of cold-stored, modified-atmosphere-packaged foods, were detected in high abundance (up to >98%) in the sausages studied. The same operational taxonomic units (OTUs) were, however, detected in lower abundances in raw meat and emulsion (average relative abundance of 2% ± 5%), as well as on the processing plant surfaces (<4%). A completely different abundance profile was found for OTUs phylogenetically close to the species Yersinia pseudotuberculosis . These OTUs were detected in high abundance (up to 28%) on the processing plant surfaces but to a lesser extent (<1%) in raw meat, sausage emulsion, and sausages. The fact that Yersinia -like OTUs were found on the surfaces of a high-hygiene packaging compartment raises food safety concerns related to their resilient existence on surfaces.
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