Zhang Shaqiu, Yang Jing, Yang Qian, Li Qianlong, Zhong Zhijun, Wang Mingshu, Jia Renyong, Chen Shun, Liu Mafeng, Zhu Dekang, Zhao Xinxin, Wu Ying, Yang Qiao, Huang Juan, Ou Xumin, Sun Di, Tian Bin, Wu Zhen, He Yu, Cheng Anchun
Avian Disease Research Center, College of Veterinary Medicine, Sichuan Agricultural University, Chengdu, China.
Institute of Veterinary Medicine and Immunology, Sichuan Agricultural University, Chengdu, China.
Front Vet Sci. 2025 Mar 21;12:1481822. doi: 10.3389/fvets.2025.1481822. eCollection 2025.
Fosfomycin (FOS) is a critical antibiotic for treating multi-drug resistant (MDR) infections, but its effectiveness is jeopardized by the dissemination of plasmids encoding enzymes that modify FOS. Despite the prohibition on its use in animal breeding in China, 100 strains of () exhibiting high resistance to FOS (MIC≥512 mg/L) were isolated from samples of waterfowl origin collected in Hainan, Sichuan, and Anhui. These strains commonly carried the A (88/100, 88.0%). In addition, 21 other antimicrobial resistance genes (ARGs) were detected in these strains, with high positivity rates for A, , , , , and . It is noteworthy that there was a significant positive correlation between the A3 and (OR = 15.162, 95% CI: 1.875-122.635). The results of pulsed-field gel electrophoresis (PFGE) demonstrated the existence of multiple dispersed clonal clusters. Multilocus sequence typing (MLST) analysis identified 45 ST types, with ST48 and ST10 representing the most dominant clones. In the conjugation experiments, 53 A-like genes positive transconjugants were obtained with measurable conjugation frequency, which strongly demonstrated that these A3 may mainly locate on different types of plasmids possessing an efficient transmission ability. Whole genome sequencing (WGS) analysis further showed that the A3 was co-localized with the on plasmids that showed a high degree of similarity in genetic structure. Of particular interest is the observation that the A3 is frequently accompanied by IS on either side of the gene. This structure may play a pivotal role in the horizontal transfer of the A3. The study revealed the alarming prevalence of FOS resistance in of waterfowl origin and delved deeply into the genetic characteristics and transmission mechanisms of the A3. The discovery of plasmid-mediated, transmissible FOS resistance in waterfowl poses a threat to "One Health". There's an urgent need for thorough monitoring and control measures against FOS resistance.
磷霉素(FOS)是治疗多重耐药(MDR)感染的一种关键抗生素,但其有效性因编码修饰FOS的酶的质粒传播而受到威胁。尽管中国禁止在动物养殖中使用磷霉素,但从海南、四川和安徽采集的水禽源样本中分离出了100株对磷霉素表现出高抗性(MIC≥512mg/L)的()菌株。这些菌株通常携带A(88/100,88.0%)。此外,在这些菌株中还检测到21种其他抗菌抗性基因(ARGs),A、、、、和的阳性率较高。值得注意的是,A3和之间存在显著正相关(OR = 15.162,95%CI:1.875 - 122.635)。脉冲场凝胶电泳(PFGE)结果表明存在多个分散的克隆簇。多位点序列分型(MLST)分析确定了45种ST型,其中ST48和ST10代表最主要的克隆。在接合实验中,获得了53个具有可测量接合频率的A样基因阳性接合子,这有力地证明了这些A3可能主要位于具有高效传播能力的不同类型质粒上。全基因组测序(WGS)分析进一步表明,A3与在遗传结构上具有高度相似性的质粒上的共定位。特别值得关注的是,观察到A3基因两侧经常伴有IS。这种结构可能在A3的水平转移中起关键作用。该研究揭示了水禽源中磷霉素抗性的惊人流行情况,并深入研究了A3的遗传特征和传播机制。在水禽中发现质粒介导的、可传播的磷霉素抗性对“同一健康”构成威胁。迫切需要针对磷霉素抗性采取全面的监测和控制措施。