Gao Xun, Luo Xiao, Qian Ruorou, Gao Guolong, Liu Jinghao, Hong Junhao, Yue Chao, Liu Jian-Hua, Liu Yi-Yun
State Key Laboratory for Animal Disease Control and Prevention, College of Veterinary Medicine, South China Agricultural University, Guangzhou 510642, China.
Key Laboratory of Zoonosis of Ministry of Agricultural and Rural Affairs, Guangzhou 510642, China.
Antibiotics (Basel). 2025 Mar 24;14(4):337. doi: 10.3390/antibiotics14040337.
The emergence of linezolid resistance, mediated by genes such as and (D), poses a growing public health threat. While these genes have been detected in clinical and animal-derived species, their presence in underexplored species like remains undocumented, leaving a significant gap in our understanding of their dissemination and stability. : GXN23C125Es was screened for the presence of known linezolid resistance genes via PCR analysis. Conjugation and stability experiments were used to evaluate the transferability and stability of the resistance genes. The complete genome of GXN23C125Es was obtained using both the Illumina and Nanopore platforms. : We report the first identification of and (D) in GXN23C125Es from chicken feces in China. Whole-genome sequencing revealed multiple plasmid-borne resistance genes, including , (D), and (A). Stability testing demonstrated that was highly stable, while (D) was rapidly lost without selective pressure. : These findings highlight as a potential reservoir for linezolid resistance genes, underscoring the need for enhanced surveillance of resistance determinants in animal-associated bacteria. Understanding the dissemination dynamics of and (D) is crucial for mitigating their impact on public health and guiding antimicrobial resistance management strategies.
由诸如和(D)等基因介导的利奈唑胺耐药性的出现,对公共卫生构成了日益严重的威胁。虽然这些基因已在临床和动物源物种中被检测到,但它们在像这样未被充分研究的物种中的存在仍未得到记录,这在我们对其传播和稳定性的理解上留下了重大空白。:通过PCR分析筛选GXN23C125Es中已知的利奈唑胺耐药基因的存在情况。使用接合和稳定性实验来评估耐药基因的转移性和稳定性。利用Illumina和Nanopore平台获得了GXN23C125Es的完整基因组。:我们报告了在中国鸡粪便中首次从GXN23C125Es中鉴定出和(D)。全基因组测序揭示了多个质粒携带的耐药基因,包括、(D)、和(A)。稳定性测试表明高度稳定,而(D)在没有选择压力的情况下迅速丢失。:这些发现突出了作为利奈唑胺耐药基因的潜在储存库,强调了加强对动物相关细菌中耐药决定因素监测的必要性。了解和(D)的传播动态对于减轻它们对公共卫生的影响以及指导抗菌药物耐药性管理策略至关重要。