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乳制品环境中携带多药耐药性和毒力基因菌株的出现:对环境、动物和公众健康的日益严重威胁。

The emergence of multi-drug resistant and virulence gene carrying strains in the dairy environment: a rising threat to the environment, animal, and public health.

作者信息

Shoaib Muhammad, He Zhoulin, Geng Xiang, Tang Minjia, Hao Ruochen, Wang Shengyi, Shang Ruofeng, Wang Xuehong, Zhang Hongjuan, Pu Wanxia

机构信息

Key Laboratory of New Animal Drug Project, Gansu Province/Key Laboratory of Veterinary Pharmaceutical Development, Ministry of Agriculture and Rural Affairs, Lanzhou Institute of Husbandry and Pharmaceutical Sciences of CAAS, Lanzhou, China.

出版信息

Front Microbiol. 2023 Jul 13;14:1197579. doi: 10.3389/fmicb.2023.1197579. eCollection 2023.

Abstract

is a common inhabitant of the intestinal microbiota and is responsible for udder infection in dairy cattle and gastro-urinary tract infections in humans. We isolated strains from a dairy farm environment in Xinjiang, China, and investigated their epidemiological characteristics, phenotypic and genotypic resistance to antimicrobials, virulence-associated genes, and phylogenetic relationship. A total of 209 samples were collected from different sources (feces, slurry, water, milk, soil) and cultured on differential and selective agar media (MAC and EMB). The presumptive identification was done by the VITEK2 system and confirmed by 16S rRNA gene amplification by PCR. Antimicrobial susceptibility testing was done by micro-dilution assay, and genomic characterization was done by simple and multiplex polymerase chain reaction (PCR). A total of 338 strains were identified from 141/209 (67.5%) of the samples. Most of the strains were resistant to sulfamethoxazole/trimethoprim (62.43%), followed by cefotaxime (44.08%), ampicillin (33.73%), ciprofloxacin (31.36%), tetracycline (28.99%), and a lesser extent to florfenicol (7.99%), gentamicin (4.44%), amikacin (1.77%), and fosfomycin (1.18%). All of the strains were susceptible to meropenem, tigecycline, and colistin sulfate. Among the resistant strains, 44.4% were identified as multi-drug resistant (MDR) showing resistance to at least one antibiotic from ≥3 classes of antibiotics. Eighteen out of 20 antibiotic-resistance genes (ARGs) were detected with (67.3%), (56.3%), (73.6%), (B) (70.4%), (85.7%), (44.4%), and (100%, 1/1) being the predominant genes among different classes of antibiotics. Among the virulence-associated genes (VAGs), was the most prevalent (86.69%) followed by (85.0%), (84.91%), (73.96%), (23.1%), (23.1%), and gene (21.9%). Most of the strains were classified under phylogenetic group B1 (75.45%), followed by A (18.34%), C (2.96%), D (1.18%), E (1.18%), and F (0.30%). The present study identified MDR strains carrying widely distributed ARGs and VAGs from the dairy environment. The findings suggested that the dairy farm environment may serve as a source of mastitis-causing pathogens in animals and horizontal transfer of antibiotic resistance and virulence genes carrying bacterial strains to humans via contaminated milk and meat, surface water and agricultural crops.

摘要

是肠道微生物群的常见成员,可导致奶牛乳房感染和人类胃肠道及泌尿系统感染。我们从中国新疆的一个奶牛场环境中分离出菌株,并调查了它们的流行病学特征、对抗生素的表型和基因型耐药性、毒力相关基因以及系统发育关系。总共从不同来源(粪便、粪浆、水、牛奶、土壤)收集了209份样本,并在鉴别和选择性琼脂培养基(MAC和EMB)上进行培养。通过VITEK2系统进行初步鉴定,并通过PCR扩增16S rRNA基因进行确认。通过微量稀释法进行药敏试验,并通过简单和多重聚合酶链反应(PCR)进行基因组特征分析。从141/209(67.5%)的样本中鉴定出总共338株菌株。大多数菌株对磺胺甲恶唑/甲氧苄啶耐药(62.43%),其次是头孢噻肟(44.08%)、氨苄西林(33.73%)、环丙沙星(31.36%)、四环素(28.99%),对氟苯尼考(7.99%)、庆大霉素(4.44%)、阿米卡星(1.77%)和磷霉素(1.18%)的耐药程度较低。所有菌株对美罗培南、替加环素和硫酸多粘菌素敏感。在耐药菌株中,44.4%被鉴定为多重耐药(MDR),对至少3类抗生素中的至少一种抗生素耐药。在20种抗生素耐药基因(ARG)中检测到18种,其中(67.3%)、(56.3%)、(73.6%)、(B)(70.4%)、(85.7%)、(44.4%)和(100%,1/1)是不同类抗生素中的主要基因。在毒力相关基因(VAG)中,最普遍的是(86.69%),其次是(85.0%)、(84.91%)、(73.96%)、(23.1%)、(23.1%)和基因(21.9%)。大多数菌株属于系统发育组B1(75.45%),其次是A(18.34%)、C(2.96%)、D(1.18%)、E(1.18%)和F(0.30%)。本研究从奶牛场环境中鉴定出携带广泛分布的ARG和VAG的MDR菌株。研究结果表明,奶牛场环境可能是动物乳腺炎致病病原体的来源,并且携带抗生素耐药性和毒力基因的细菌菌株可通过受污染的牛奶和肉类、地表水和农作物向人类进行水平转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4c5/10382034/2a2033e5f9a7/fmicb-14-1197579-g001.jpg

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