Guangdong Laboratory for Lingnan Modern Agriculture, College of Animal Science, South China Agricultural University, Guangzhou 510642, China.
Foshan Customs Comprehensive Technology Center, Foshan 528200, China.
J Hazard Mater. 2023 Sep 15;458:131889. doi: 10.1016/j.jhazmat.2023.131889. Epub 2023 Jun 19.
Livestock-derived tetX-positive Escherichia coli with tigecycline resistance poses a serious risk to public health. Fitness costs, antibiotic residues, and other tetracycline resistance genes (TRGs) are fundamental in determining the spread of tetX in the environment, but there is a lack of relevant studies. The results of this study showed that both tetO and tetX resulted in reduction in growth and an increased in the metabolic burden of E. coli, but the presence of doxycycline reversed this phenomenon. Moreover, the protection of E. coli growth and metabolism by tetO was superior to that of tetX in the presence of doxycycline, resulting in a much lower competitiveness of tetX-carrying E. coli than tetO-carrying E. coli. The results of RNA-seq showed that the increase in outer membrane proteins (ompC, ompF and ompT) of tetX-carrying E. coli resulted in increased membrane permeability and biofilm formation, which is an important reason for fitness costs. Overall, the increased membrane permeability and metabolic burden of E. coli is the mechanistic basis for the high fitness cost of tetX, and the spread of tetO may limit the spread of tetX. This study provides new insights into the rational use of tetracycline antibiotics to control the spread of tetX.
畜源携带替加环素耐药基因 tetX 的大肠杆菌对公共卫生构成严重威胁。适应成本、抗生素残留和其他四环素耐药基因(TRGs)是决定 tetX 在环境中传播的重要因素,但相关研究较少。本研究结果表明,tetO 和 tetX 均导致大肠杆菌生长减少和代谢负担增加,但存在强力霉素时可逆转这种现象。此外,在存在强力霉素的情况下,tetO 对大肠杆菌生长和代谢的保护作用优于 tetX,导致携带 tetX 的大肠杆菌的竞争力远低于携带 tetO 的大肠杆菌。RNA-seq 结果表明,携带 tetX 的大肠杆菌中外膜蛋白(ompC、ompF 和 ompT)的增加导致膜通透性增加和生物膜形成,这是适应成本增加的重要原因。总体而言,大肠杆菌膜通透性和代谢负担的增加是 tetX 高适应成本的机制基础,tetO 的传播可能会限制 tetX 的传播。本研究为合理使用四环素类抗生素控制 tetX 的传播提供了新的见解。