Sun Hua-Run, Cui Xiao-Die, Liu Xiao-Kang, Li Shuai-Hua, Yi Kai-Fang, Pan Yu-Shan, Wu Hua, Yuan Li, Hu Gong-Zheng, He Dan-Dan
Department of Pharmacology and Toxicology, College of Animal Science and Veterinary Medicine, Henan Agricultural University, Zhengzhou, China.
Front Microbiol. 2020 Aug 13;11:1884. doi: 10.3389/fmicb.2020.01884. eCollection 2020.
ICE was identified in the genome of a serovar 8 ST288 isolate YHP170504 from a case of swine lower respiratory tract infection. The aim of the present study was to characterize the integrative conjugative element ICE and its multiresistance region. Susceptibility testing was determined by broth microdilution and the complete ICE was identified by WGS analysis. The full sequence of ICE was analyzed with bioinformatic tools. The presence of ICE, its circular intermediate and integration site were confirmed by PCR and sequence analysis. Transfer of ICE was confirmed by conjugation. ICE has a size of 68,922 bp with 37.42% GC content and harbors 81 genes responsible for replication and stabilization, transfer, integration, and accessory functions, as well as seven different resistance genes [ , (B), , , , , and ]. Conjugation experiments showed that ICE could be transferred to V43 with frequencies of 6.1 × 10. This is the first time a multidrug-resistance ICE has been reported in . Seven different resistance genes were located on a novel integrative conjugative element ICE, which suggests that the ICE is capable of acquiring foreign genes and serving as a carrier for various resistance genes.
在一株来自猪下呼吸道感染病例的血清型8 ST288分离株YHP170504的基因组中鉴定出了ICE。本研究的目的是对整合型接合元件ICE及其多耐药区域进行表征。通过肉汤微量稀释法进行药敏试验,并通过全基因组测序(WGS)分析鉴定完整的ICE。使用生物信息学工具分析ICE的完整序列。通过PCR和序列分析确认ICE的存在、其环状中间体和整合位点。通过接合试验确认ICE的转移。ICE大小为68922 bp,GC含量为37.42%,含有81个负责复制与稳定、转移、整合及辅助功能的基因,以及7个不同的耐药基因[ , (B), , , , , 和 ]。接合试验表明ICE能够以6.1×10的频率转移至V43。这是首次在 中报道多药耐药ICE。7个不同的耐药基因位于一个新型整合型接合元件ICE上,这表明ICE能够获取外源基因并作为各种耐药基因的载体。