IntroductionShiga toxin-producing Escherichia coli (STEC) is a zoonotic pathogen that cause food-borne diseases in humans. Cattle and derived foodstuffs play a known role as reservoir and vehicles, respectively. In Uruguay, information about the characteristics of circulating STEC in meat productive chain is scarce. The aim was to characterize STEC strains recovered from 800 bovine carcasses of different slaughterhouses.MethodsTo characterize STEC strains we use classical microbiological procedures, Whole Genome Sequencing (WGS) and FAO/WHO risk criteria.ResultsWe analyzed 39 STEC isolated from 20 establishments. They belonged to 21 different O-groups and 13 different H-types. Only one O157:H7 strain was characterized and the serotypes O130:H11(6), O174:H28(5), and O22:H8(5) prevailed. One strain showed resistance in vitro to tetracycline and genes for doxycycline, sulfonamide, streptomycin and fosfomycin resistance were detected. Thirty-three strains (84.6%) carried the subtypes Stx2a, Stx2c, or Stx2d. The gene eae was detected only in two strains (O157:H7, O182:H25). The most prevalent virulence genes found were lpfA (n = 38), ompA (n = 39), ompT (n = 39), iss (n = 38), and terC (n = 39). Within the set of STEC analyzed, the majority (81.5%) belonged to FAO/WHO’s risk classification levels 4 and 5 (lower risk). Besides, we detected STEC serotypes O22:H8, O113:H21, O130:H11, and O174:H21 belonged to level risk 2 associate with diarrhea, hemorrhagic colitis or Hemolytic-Uremic Syndrome (HUS). The only O157:H7 strain analyzed belonged to ST11. Thirty-eight isolates belonged to the Clermont type B1, while the O157:H7 was classified as E.DiscussionThe analyzed STEC showed high genomic diversity and harbor several genetic determinants associated with virulence, underlining the important role of WGS for a complete typing. In this set we did not detect non-O157 STEC previously isolated from local HUS cases. However, when interpreting this findings, the low number of isolates analyzed and some methodological limitations must be taken into account. Obtained data suggest that cattle constitute a local reservoir of non-O157 serotypes associated with severe diseases. Other studies are needed to assess the role of the local meat chain in the spread of STEC, especially those associated with severe diseases in humans.
El queso Colonia es un queso típico uruguayo, elaborado según los criterios de calidad y tradición quesera de inmigrantes suizos radicados en el departamento de Colonia. Su investigación y publicación aportan conocimiento para la difusión de un proceso que aún no presenta denominación de origen protegida. El objetivo del estudio fue investigar si la tecnología de salado por impregnación en vacío afecta el proceso de maduración del queso Colonia en comparación con el proceso de salado tradicional. Para el seguimiento de los cambios se realizaron determinaciones del índice de maduración, concentración del cloruro de sodio en agua del queso, el pH y la evolución de las bacterias Lactococcus lactis, Lactococcus lactis subsp. diacetylactis, Leuconostoc subsp. mesenteroides y Propionibacterium. Al ¿ nalizar la maduración, se evaluaron sensorialmente los atributos de textura, sabor y aroma, apariencia externa y apariencia interna. Las condiciones operativas elegidas del salado por impregnación en vacío lograron el mismo ingreso de sal que las del proceso tradicional y en la mitad del tiempo. No se observaron diferencias en ninguno de los parámetros químicos y microbiológicos estudiados. En lo sensorial tampoco se apreciaron diferencias en el À avor, textura y apariencia externa. Se hallaron ciertas diferencias en el tamaño y distribución de los ojos. Palabras clave: Tiempo de salado, bacterias lácticas, bacterias propiónicas, queso uruguayo.Abstract "Colonia" type cheese is a typical Uruguayan cheese, elaborated following the quality standards and cheese making tradition brought by Swiss immigrants settled down at the Uruguayan department of Colonia. Its study and outreach provide knowledge to the diffusion of a process wich does not present a protected designation of origin. The aim of the study was to analize if the vacuum impregnation technology affects Colonia cheese ripening process compared with the traditional salting methods. Chemical, microbiological and sensory changes during ripening after both, SIV and traditional salting methods, were analized in this study. Chemical changes refer to moisture, sodium chloride concentration and rate of ripening. The microbiological changes were focused onto bacteria growing and identi¿ cation of Lactococcus lactis, Lactococcus lactis subsp diacetylactis, Leuconostoc subsp mesenteroides and Propionic bacteria. Sensory attributes linked to texture, taste and À avor, as much as external and internal appearances were evaluated. The selected operating conditions of the vacuum impregnation process allowed the income ingress of salt to the cheese in half traditional process time. Under these conditions, no differences in chemical and microbiological parameters studied were appreciated. There were no sensory differences in À avor, texture and the outward appearance but certain differences in the size and distribution of the eyes were found.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.
hi@scite.ai
10624 S. Eastern Ave., Ste. A-614
Henderson, NV 89052, USA
Copyright © 2024 scite LLC. All rights reserved.
Made with 💙 for researchers
Part of the Research Solutions Family.