A novel tigecycline resistance gene, tet(X6), on an SXT/R391 integrative and conjugative element in a Proteus genomospecies 6 isolate of retail meat origin
Autor: | Yu-Shan Pan, Lanping Liu, Gong-Zheng Hu, Liangliang Wang, Jian-Hua Liu, Shiyu Zhao, Dandan He |
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Rok vydání: | 2020 |
Předmět: |
0301 basic medicine
Microbiology (medical) Meat Cefotaxime Tetracycline 030106 microbiology Microbial Sensitivity Tests Tigecycline 03 medical and health sciences Ampicillin medicine Pharmacology (medical) Gene Pharmacology Genetics biology Kanamycin Proteus biology.organism_classification 030104 developmental biology Infectious Diseases Conjugation Genetic Colistin medicine.drug |
Zdroj: | Journal of Antimicrobial Chemotherapy. 75:1159-1164 |
ISSN: | 1460-2091 0305-7453 |
Popis: | Objectives To characterize a novel tigecycline resistance gene, tet(X6), and a novel SXT-related integrative and conjugative element (ICE), ICEPgs6Chn1, found in a tigecycline-resistant Proteus genomospecies 6 strain, T60. Methods Strain T60 was identified by the VITEK 2 system, biochemical reactions and an SNP-based approach. The genetic profile of strain T60 was determined by WGS analysis. ICEPgs6Chn1 was analysed by PCR, conjugation experiments and bioinformatics tools. tet(X6) was characterized by cloning and protein structure prediction. Results Strain T60 was resistant to ampicillin, tetracycline, tigecycline, florfenicol, colistin and kanamycin, but susceptible to cefotaxime; it also exhibited high MICs of eravacycline (32 mg/L) and omadacycline (>64 mg/L). Only one chromosome was identified and tet(X6) was located in chromosomal ICEPgs6Chn1, a member of the SXT/R391 ICE family, of 114 368 bp and encoding the antimicrobial resistance genes floR, strB, strA, aph(3′)-Ia, aac(3)-IV, aph(4)-Ia, tet(X6) and sul2. The circular intermediate of ICEPgs6Chn1 was detected by PCR and sequencing, but conjugation experiments showed that it was not self-transmissible. Cloning of the novel gene tet(X6) and protein structure prediction revealed that Tet(X6) confers tigecycline resistance. Conclusions To our knowledge, this is the first report of a novel SXT/R391 ICE in a Proteus genomospecies 6 strain. Importantly, a novel high-level tigecycline resistance gene, tet(X6), emerged for the first time in the SXT/R391 element of Proteus genomospecies 6, revealing that ICEs may serve as an important platform for the accumulation of antibiotic resistance genes. |
Databáze: | OpenAIRE |
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