中国临床牛乳腺炎中分离出的多重耐药大肠埃希菌的流行情况和分子特征。

IF 1.7 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Biotechnology Pub Date : 2024-11-01 Epub Date: 2024-03-13 DOI:10.1080/10495398.2024.2322541
Hongxia Zhao, Hailan Ma, Chen Song, Shuting Fan, Hongliang Fan, Weiguang Zhou, Jinshan Cao
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引用次数: 0

摘要

不同的抗生素被用于治疗由大肠杆菌(E. coli)引起的奶牛乳腺炎。自 2000 年以来,中国对食用动物的抗菌药耐药性进行了监测。监测数据显示,动物体内多重耐药大肠杆菌的流行率显著上升。本研究旨在调查从中国临床牛乳腺炎(CBM)泌乳奶牛中获得的大肠杆菌菌株(n = 105)中耐药性决定因子的发生和分子特征。从 5000 头奶牛中选取了 220 头患有临床乳腺炎(乳房肿胀、乳汁减少、发红或坏疽)的奶牛。结果显示,94.3%的分离株被确认为耐多药。这些分离物(30.5%)的 I 类整合酶基因呈阳性,同时还有 7 个基因盒,分别对三甲氧苄啶(dfrA17、dfr2d 和 dfrA1)、氨基糖苷类(aadA1 和 aadA5)和氯霉素(catB3 和 catB2)产生耐药性。所有分离物中都存在 blaTEM 基因,这些分离物携带 blaCTX 基因。在所有耐氟喹诺酮的分离物中都观察到了gyrA的双突变(即Ser83Leu和Asp87Asn)。总共发现 9 个耐氟喹诺酮大肠杆菌分离物的 parC 发生了 5 种不同类型的突变。在 4 个(44.4%)分离株中,parE 中出现了 Ser458Ala;在所有 9 个(9/9)耐氟喹诺酮分离株中,gyrB 中出现了 Pro385Ala。同时,观察到氟喹诺酮具有高度耐药性,尤其是在gyrA和parC突变的分离株中。总之,本研究结果确认了氟喹诺酮耐药机制,并揭示了CBM泌乳牛大肠杆菌分离物中整合素的普遍性和ESBLs。
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Prevalence and molecular characterization of multi-resistant Escherichia coli isolates from clinical bovine mastitis in China.

Different antibiotics are used to treat mastitis in dairy cows that is caused by Escherichia coli (E. coli). Antimicrobial resistance in food-producing animals in China has been monitored since 2000. Surveillance data have shown that the prevalence of multiresistant E. coli in animals has increased significantly. This study aimed to investigate the occurrence and molecular characteristics of resistance determinants in E. coli strains (n = 105) obtained from lactating cows with clinical bovine mastitis (CBM) in China. A total of 220 cows with clinical mastitis, which has swollen mammary udder with reduced and red or gangrenous milk, were selected from 5000 cows. The results showed 94.3% of the isolates were recognized as multidrug resistant. The isolates (30.5%) were positive for the class I integrase gene along with seven gene cassettes that were accountable for resistance to trimethoprim resistance (dfrA17, dfr2d and dfrA1), aminoglycosides resistance (aadA1 and aadA5) and chloramphenicol resistance (catB3 and catB2), respectively. The blaTEM gene was present in all the isolates, and these carried the blaCTX gene. A double mutation in gyrA (i.e., Ser83Leu and Asp87Asn) was observed in all fluoroquinolone-resistant isolates. In total, nine fluoroquinolone-resistant E. coli isolates were identified with five different types of mutations in parC. In four (44.4%) isolates, Ser458Ala was present in parE, and in all nine (9/9) fluoroquinolone-resistant isolates, Pro385Ala was present in gyrB. Meanwhile, fluoroquinolone was observed as highly resistant, especially in isolates with gyrA and parC mutations. In summary, the findings of this research recognize the fluoroquinolone resistance mechanism and disclose integron prevalence and ESBLs in E. coli isolates from lactating cattle with CBM.

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来源期刊
Animal Biotechnology
Animal Biotechnology 工程技术-奶制品与动物科学
CiteScore
2.90
自引率
5.40%
发文量
230
审稿时长
>12 weeks
期刊介绍: Biotechnology can be defined as any technique that uses living organisms (or parts of organisms like cells, genes, proteins) to make or modify products, to improve plants, animals or microorganisms for a specific use. Animal Biotechnology publishes research on the identification and manipulation of genes and their products, stressing applications in domesticated animals. The journal publishes full-length articles and short research communications, as well as comprehensive reviews. The journal also provides a forum for regulatory or scientific issues related to cell and molecular biology applied to animal biotechnology. Submissions on the following topics are particularly welcome: - Applied microbiology, immunogenetics and antibiotic resistance - Genome engineering and animal models - Comparative genomics - Gene editing and CRISPRs - Reproductive biotechnologies - Synthetic biology and design of new genomes
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