Identification of the novel tigecycline resistance gene tet(X6) and its variants in Myroides, Acinetobacter and Proteus of food animal origin
文献类型: 外文期刊
作者: Liu, Dejun 1 ; Zhai, Weishuai 1 ; Song, Huangwei 1 ; Fu, Yulin 1 ; Schwarz, Stefan 1 ; He, Tao 3 ; Bai, Li 4 ; Wang, Yang 1 ;
作者机构: 1.China Agr Univ, Coll Vet Med, Beijing Adv Innovat Ctr Food Nutr & Human Hlth, Beijing, Peoples R China
2.Free Univ Berlin, Ctr Infect Med, Inst Microbiol & Epizoot, Dept Vet Med, Berlin, Germany
3.Jiangsu Acad Agr Sci, Inst Food Safety & Nutr, Nanjing, Peoples R China
4.Chinese Acad Med Sci, China Natl Ctr Food Safety Risk Assessment, Food Safety Res Unit, Beijing, Peoples R China
5.Inst Infect & Immun, Dept Med Microbiol & Infect Dis, Cardiff, Wales
期刊名称:JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY ( 影响因子:5.79; 五年影响因子:5.851 )
ISSN: 0305-7453
年卷期: 2020 年 75 卷 6 期
页码:
收录情况: SCI
摘要: Objectives: To report a novel tigecycline resistance gene, tet(X6), and its variants in four bacterial species isolated from chickens and pigs in China. Methods: WGS was conducted to identify the suspected resistance genes in the tigecycline-resistant Myroides phaeus 18QD1AZ29W. Functional cloning, homology modelling and molecular docking were performed to compare the function with other Tet(X) variants. Retrospective screening for tet(X6) was conducted for 80 isolates in our WGS data collection, and all genomic environments of tet(X6)-positive isolates were analysed. Results: The tigecycline-resistant M. phaeus 18QD1AZ29W isolated from a pig farm in Shandong in 2018 was positive for tet(X2) and a novel tet(X) gene, designated tet(X6). Tet(X6) could increase the MICs of all tested tetracyclines/glycylcyclines for Escherichia coli only 2- to 4-fold, which was possibly due to a lower tetracycline binding capacity of Tet(X6) compared with that of other Tet(X) variants. Retrospective screening showed that seven other isolates (7/80, 8.8%), comprising four Proteus spp. and three Acinetobacter spp. from chickens and pigs in Shandong and Guangdong, were positive for three different variants of tet(X6). The analysis of the genomic environment revealed that two tet(X6)-positive isolates from M. phaeus and Proteus cibarius, respectively, contained ISCR2, which may play a role in tet(X6) transmission. Conclusions: This study identified a novel type of tigecycline resistance gene, tet(X6), in Myroides, Acinetobacter and Proteus from chickens and swine. Tet(X6) conferred lower tetracycline/glycylcycline MICs than other Tet(X) variants, and ISCR2 may play a role in the transmission of tet(X6).
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