Author:
Wei Xiaoyuan,Hassen Anwar,McWilliams Karen,Pietrzen Karen,Chung Taejung,Acevedo Marysabel Méndez,Chandross-Cohen Tyler,Dudley Edward G.,Vipham Jessie,Mamo Hassen,Tessema Tesfaye Sisay,Zewdu Ashagrie,Kovac Jasna
Abstract
AbstractListeriosis caused by Listeria monocytogenes often poses a significant threat to vulnerable populations. Dairy products have been implicated in outbreaks of listeriosis worldwide. In Ethiopia, studies have identified Listeria spp. and L. monocytogenes in various dairy products, but the genetic diversity and phylogenetic relationships of these bacteria remain largely unknown in the low- and middle-income countries. Therefore, we conducted whole-genome sequencing on 15 L. monocytogenes and 55 L. innocua isolates obtained from different levels of the dairy supply chains across three regions in Ethiopia. Genomes were assembled and used for MLST genotyping and single nucleotide polymorphism (SNP) analysis to infer phylogenetic relationships. We identified a total of 3 L. monocytogenes (i.e., 2, 145, and 18) and 12 L. innocua (i.e., 1489, 1619, 603, 537, 1010, 3186, 492, 3007, 1087, 474, 1008, and 637) MLST sequence types among the studied isolates. Some of these sequence types showed region-specific occurrence, while others were broadly distributed across regions. Through high-quality SNP analysis, we found that among 13 L. monocytogenes identified as ST 2, 11 of them were highly similar with low genetic variation, differing by only 1 to 10 SNPs, suggesting potential selection in the dairy food supply chain. The L. innocua isolates also exhibited low intra-ST genetic variation with only 0–10 SNP differences, except for the ST 1619, which displayed a greater diversity.
Funder
U.S. Food and Drug Administration
Hatch Appropriations of the USDA National Institute of Food and Agriculture
Bill and Melinda Gates Foundation and the UK Foreign, Commonwealth, and Development Office
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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