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小型家禽养殖场中 ESBL 变异体的计算机模拟分析及产 ESBL 大肠杆菌的可能来源追踪

In-silico insights of ESBL variants and tracking the probable sources of ESBL-producing Escherichia coli in a small-scale poultry farm.

机构信息

Department of Veterinary Microbiology, West Bengal University of Animal and Fishery Sciences, 37, K.B. Sarani, Belgachia, Kolkata, India.

Kusuma School of Biological Sciences, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016, India; Department of Zoology, Raiganj Surendranath Mahavidyalaya, Sudarshanpur, Raiganj, Uttar Dinajpur, West Bengal, 733134, India.

出版信息

Microb Pathog. 2024 Jul;192:106710. doi: 10.1016/j.micpath.2024.106710. Epub 2024 May 25.

Abstract

Commercial broiler farms face challenges of extended spectrum beta-lactamase (ESBL)-producing Escherichia coli transmitted from both vertical and horizontal routes. Understanding the dynamics of ESBL-E. coli transmission in compromised biosecurity settings of small-scale rural poultry farms is essential. This study aimed to elucidate the probable transmission pathways of ESBL-E. coli in such settings, employing phylogenetic analysis and molecular docking simulations to explore the catalytic properties of β-lactamase variants. Sampling was conducted on a small-scale poultry farm in West Bengal, India, collecting 120 samples at three intervals during the broiler production cycle. E. coli isolates underwent resistance testing against eight antimicrobials, with confirmation of ESBL production. Genotypic analysis of ESBL genes and sequencing were performed, alongside molecular docking analyses and phylogenetic comparisons with publicly available sequences. Among 173 E. coli isolates, varying resistance profiles were observed, with complete resistance to cefixime and high resistance to amoxicillin and tetracycline. The incidence of ESBL-E. coli fluctuated over the production cycle, with dynamic changes in the prevalence of bla-type and bla-type genes. Phylogenetic analysis indicated partial clonal relationships with human clinical strains and poultry strains from the Indian subcontinent. Molecular docking confirmed the catalytic efficiencies of these ESBL variants. The study highlights probable vertical transmission of ESBL-E. coli and emphasizes drinking water as a potential source of horizontal transmission in small-scale poultry farms. Strict biosecurity measures could prevent the spread of antimicrobial-resistant bacteria in birds and their products in a small scale poultry farm.

摘要

商业肉鸡养殖场面临着从垂直和水平途径传播的产extended-spectrum beta-lactamase (ESBL)的大肠杆菌的挑战。了解小规模农村家禽养殖场生物安全措施受损情况下 ESBL-大肠杆菌传播的动态至关重要。本研究旨在阐明这种情况下 ESBL-大肠杆菌可能的传播途径,采用系统发育分析和分子对接模拟来探索β-内酰胺酶变体的催化特性。在印度西孟加拉邦的一个小规模家禽养殖场进行了采样,在肉鸡生产周期的三个时间点采集了 120 个样本。对大肠杆菌分离株进行了 8 种抗菌药物的耐药性测试,以确认 ESBL 的产生。对 ESBL 基因进行了基因型分析和测序,同时进行了分子对接分析,并与公开可用序列进行了系统发育比较。在 173 株大肠杆菌分离株中,观察到不同的耐药谱,对头孢克肟完全耐药,对阿莫西林和四环素高度耐药。ESBL-大肠杆菌的发生率在生产周期中波动,bla 型和 bla 型基因的流行率发生动态变化。系统发育分析表明与人类临床株和来自印度次大陆的家禽株存在部分克隆关系。分子对接证实了这些 ESBL 变体的催化效率。该研究强调了 ESBL-大肠杆菌可能的垂直传播,并强调了饮用水是小规模家禽养殖场中水平传播的潜在来源。严格的生物安全措施可以防止在小规模家禽养殖场中的鸟类及其产品中传播抗微生物耐药细菌。

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