Literature DB >> 33348682

Detection of Oxazolidinone Resistance Genes and Characterization of Genetic Environments in Enterococci of Swine Origin, Italy.

Simona Fioriti1, Gianluca Morroni1, Sonia Nina Coccitto1, Andrea Brenciani1, Alberto Antonelli2,3, Vincenzo Di Pilato4, Ilaria Baccani2, Simona Pollini2,3, Lucilla Cucco5, Alessandra Morelli5, Marta Paniccià5, Chiara Francesca Magistrali5, Gian Maria Rossolini2,3, Eleonora Giovanetti6.   

Abstract

One hundred forty-five florfenicol-resistant enterococci, isolated from swine fecal samples collected from 76 pig farms, were investigated for the presence of optrA, cfr, and poxtA genes by PCR. Thirty florfenicol-resistant Enterococcus isolates had at least one linezolid resistance gene. optrA was found to be the most widespread linezolid resistance gene (23/30), while cfr and poxtA were detected in 6/30 and 7/30 enterococcal isolates, respectively. WGS analysis also showed the presence of the cfr(D) gene in Enterococcus faecalis (n = 2 isolates) and in Enterococcus avium (n = 1 isolate). The linezolid resistance genes hybridized both on chromosome and plasmids ranging from ~25 to ~240 kb. Twelve isolates were able to transfer linezolid resistance genes to enterococci recipient. WGS analysis displayed a great variability of optrA genetic contexts identical or related to transposons (Tn6628 and Tn6674), plasmids (pE035 and pWo27-9), and chromosomal regions. cfr environments showed identities with Tn6644-like transposon and a region from p12-2300 plasmid; cfr(D) genetic contexts were related to the corresponding region of the plasmid 4 of Enterococcus faecium E8014; poxtA was always found on Tn6657. Circular forms were obtained only for optrA- and poxtA-carrying genetic contexts. Clonality analysis revealed the presence of E. faecalis (ST16, ST27, ST476, and ST585) and E. faecium (ST21) clones previously isolated from humans. These results demonstrate a dissemination of linezolid resistance genes in enterococci of swine origin in Central Italy and confirm the spread of linezolid resistance in animal settings.

Entities:  

Keywords:  Enterococcus faecalis; Enterococcus faecium; Enterococcus spp.; cfr; cfr(D); conjugative plasmid; optrA; oxazolidinone resistance; poxtA

Year:  2020        PMID: 33348682     DOI: 10.3390/microorganisms8122021

Source DB:  PubMed          Journal:  Microorganisms        ISSN: 2076-2607


  9 in total

1.  Detection of poxtA2, a Presumptive poxtA Ancestor, in a Plasmid from a Linezolid-Resistant Enterococcus gallinarum Isolate.

Authors:  Ilaria Baccani; Alberto Antonelli; Vincenzo Di Pilato; Marco Coppi; Tiziana Di Maggio; Michele Spinicci; Ana Liz Villagran; Carmen Revollo; Alessandro Bartoloni; Gian Maria Rossolini
Journal:  Antimicrob Agents Chemother       Date:  2021-07-16       Impact factor: 5.191

2.  Special Issue "Antimicrobial Resistance: From the Environment to Human Health".

Authors:  Carla Viegas; Susana Viegas
Journal:  Microorganisms       Date:  2021-03-26

3.  Large diversity of linezolid-resistant isolates discovered in food-producing animals through linezolid selective monitoring in Belgium in 2019.

Authors:  Michaël Timmermans; Bert Bogaerts; Kevin Vanneste; Sigrid C J De Keersmaecker; Nancy H C Roosens; Carole Kowalewicz; Guillaume Simon; Maria A Argudín; Ariane Deplano; Marie Hallin; Pierre Wattiau; David Fretin; Olivier Denis; Cécile Boland
Journal:  J Antimicrob Chemother       Date:  2021-12-24       Impact factor: 5.790

4.  New Sequence Types and Antimicrobial Drug-Resistant Strains of Streptococcus suis in Diseased Pigs, Italy, 2017-2019.

Authors:  Lucilla Cucco; Marta Paniccià; Francesca Romana Massacci; Alessandra Morelli; Massimo Ancora; Iolanda Mangone; Adriano Di Pasquale; Andrea Luppi; Denis Vio; Cesare Cammà; Chiara Francesca Magistrali
Journal:  Emerg Infect Dis       Date:  2022-01       Impact factor: 6.883

5.  Linezolid-Resistant Enterococcus spp. Isolates from Foods of Animal Origin-The Genetic Basis of Acquired Resistance.

Authors:  Urszula Zarzecka; Arkadiusz Józef Zakrzewski; Wioleta Chajęcka-Wierzchowska; Anna Zadernowska
Journal:  Foods       Date:  2022-03-28

Review 6.  Antibiotic Resistance in Bacteria-A Review.

Authors:  Renata Urban-Chmiel; Agnieszka Marek; Dagmara Stępień-Pyśniak; Kinga Wieczorek; Marta Dec; Anna Nowaczek; Jacek Osek
Journal:  Antibiotics (Basel)       Date:  2022-08-09

7.  Identification of the Multiresistance Gene poxtA in Oxazolidinone-Susceptible Staphylococcus haemolyticus and Staphylococcus saprophyticus of Pig and Feed Origins.

Authors:  Lin Chen; Jian-Xin Hu; Chang Liu; Jiao Liu; Zhen-Bao Ma; Zi-Yun Tang; Ya-Fei Li; Zhen-Ling Zeng
Journal:  Pathogens       Date:  2021-05-14

8.  Mobile Oxazolidinone Resistance Genes in Gram-Positive and Gram-Negative Bacteria.

Authors:  Stefan Schwarz; Wanjiang Zhang; Xiang-Dang Du; Henrike Krüger; Andrea T Feßler; Shizhen Ma; Yao Zhu; Congming Wu; Jianzhong Shen; Yang Wang
Journal:  Clin Microbiol Rev       Date:  2021-06-02       Impact factor: 50.129

9.  Plasmid Fusion and Recombination Events That Occurred during Conjugation of poxtA-Carrying Plasmids in Enterococci.

Authors:  Xinxin Shan; Mengyan Yang; Nannan Wang; Stefan Schwarz; Dexi Li; Xiang-Dang Du
Journal:  Microbiol Spectr       Date:  2022-01-19
  9 in total

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