Genomic characterization of antimicrobial-resistance and virulence factors in Salmonella isolates obtained from pig farms in Antioquia, Colombia.

IF 3.4 2区 医学 Q1 PARASITOLOGY PLoS Neglected Tropical Diseases Pub Date : 2025-01-31 eCollection Date: 2025-01-01 DOI:10.1371/journal.pntd.0012830
María Isabel García-Álvarez, Juana L Vidal, Pilar Donado-Godoy, Jared Smith, Nikki Shariat, María Fernanda Valencia, Luis M Gómez-Osorio, Sara López-Osorio, Jenny J Chaparro-Gutiérrez
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Abstract

Background: Occurrence of antimicrobial-resistant Salmonella strains has been reported worldwide, because of inappropriate use of antimicrobial products in either humans or animals. The presence of multidrug resistant Salmonella in pig production systems had been reported in Antioquia, Colombia.

Aim: To identify antimicrobial resistance genes (ARG) in different Salmonella spp. strains isolated from pig productions in Antioquia, Colombia. Methods: Samples were received at the Diagnostic Unit of the Faculty of Agrarian Sciences at the University of Antioquia, from January 1, 2019, to January 2021. A total of 28 isolates of Salmonella spp. were included, which presented phenotypic resistance to more than one antibiotic used in pig farms. Whole genome sequencing (WGS) was performed in the Unit of Genomic of Agrosavia using an automated pipeline from the GHRU- Sanger Institute, employing the Illumina MiSeq platform.

Results: WGS revealed 34 ARGs among these isolates. In 25 isolates (89%) more than two ARGs were found. Genes encoding resistance were found for 10 different groups of antibiotics (beta-lactam, aminoglycosides, chloramphenicol, rifampicins, lincosamides, fluoroquinolones, tetracyclines, sulfonamides and trimethoprim). The most frequently observed MDR profile in Typhimurium isolates was AMP-CEX-CEP-CEF-EFT-CEQ-FLU-ENR-TE-FFC-SXT.

Conclusion: The presence of multi-drug resistant Salmonella strains in pigs destined for human consumption in Antioquia, Colombia was determined. This research emphasizes the utmost importance of epidemiological tools to understand the presence and spreading of antimicrobial resistance genes in pig farms. Additionally, it highlights the critical need for developing educational programs and public policies to help reduce the spread of antimicrobial resistance in production systems.

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从哥伦比亚安蒂奥基亚养猪场分离的沙门氏菌的抗菌素耐药性和毒力因子的基因组特征。
背景:由于在人类或动物中不适当使用抗菌产品,在世界范围内已经报道了耐抗生素沙门氏菌菌株的发生。据报道,在哥伦比亚安蒂奥基亚的养猪生产系统中存在多重耐药沙门氏菌。目的:鉴定从哥伦比亚安蒂奥基亚养猪场分离的沙门氏菌的耐药基因(ARG)。方法:样品于2019年1月1日至2021年1月在安蒂奥基亚大学农业科学学院诊断单元接收。共分离出28株沙门氏菌,对养猪场使用的一种以上抗生素表现出表型抗性。全基因组测序(WGS)在Agrosavia基因组单元进行,使用GHRU- Sanger研究所的自动化流水线,采用Illumina MiSeq平台。结果:WGS共检出34株ARGs。在25株(89%)分离株中发现2个以上ARGs。发现了10组不同抗生素(β -内酰胺类、氨基糖苷类、氯霉素类、利福平类、lincoamide类、氟喹诺酮类、四环素类、磺胺类和甲氧苄啶类)的耐药基因。在鼠伤寒菌分离株中最常见的耐多药谱为amp - ceex - cep - cef - eft - ceq -流感- enr - te - ffc - sxt。结论:在哥伦比亚安蒂奥基亚市人用猪中检测到多药耐药沙门氏菌。这项研究强调了使用流行病学工具来了解猪场中抗菌素耐药基因的存在和传播的重要性。此外,报告强调迫切需要制定教育计划和公共政策,以帮助减少生产系统中抗菌素耐药性的传播。
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PLoS Neglected Tropical Diseases
PLoS Neglected Tropical Diseases PARASITOLOGY-TROPICAL MEDICINE
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10.50%
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723
期刊介绍: PLOS Neglected Tropical Diseases publishes research devoted to the pathology, epidemiology, prevention, treatment and control of the neglected tropical diseases (NTDs), as well as relevant public policy. The NTDs are defined as a group of poverty-promoting chronic infectious diseases, which primarily occur in rural areas and poor urban areas of low-income and middle-income countries. Their impact on child health and development, pregnancy, and worker productivity, as well as their stigmatizing features limit economic stability. All aspects of these diseases are considered, including: Pathogenesis Clinical features Pharmacology and treatment Diagnosis Epidemiology Vector biology Vaccinology and prevention Demographic, ecological and social determinants Public health and policy aspects (including cost-effectiveness analyses).
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