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蝙蝠作为抗生素耐药决定因素的储存库:灰头狐蝠(Pteropus poliocephalus)中 1 类整合子的调查。

Bats as reservoirs of antibiotic resistance determinants: A survey of class 1 integrons in Grey-headed Flying Foxes (Pteropus poliocephalus).

机构信息

Department of Biological Sciences, Macquarie University, NSW 2109, Australia.

School of Animal and Veterinary Sciences, University of Adelaide, SA 5371, Australia.

出版信息

Infect Genet Evol. 2019 Jun;70:107-113. doi: 10.1016/j.meegid.2019.02.022. Epub 2019 Feb 21.

Abstract

Increasing reports of antimicrobial resistance in wildlife highlight the significance of a One Health approach to managing resistance. We investigated the prevalence and diversity of class 1 integrons, a genetic determinant of resistance, in grey-headed flying foxes, a large fruit bat species belonging to the order Chiroptera. Class 1 integrons were detected in both wild flying foxes (5.3%) and captive flying foxes (41.2%) housed in wildlife rehabilitation facilities. Genes encoding resistance to aminoglycosides, trimethoprim and beta-lactams, and Qac efflux pumps were detected. Analysis of conserved integron elements and gene cassette arrays indicate the direction of integron transfer is from humans to flying foxes. The detection of two novel gene cassette arrays (5'CS-qacH-aacA34-bla-3'CS and 5'CS-qacF-3'CS strongly suggests acquisition of genes from the environmental resistome into class 1 integrons within the flying fox microbiota. The dynamics of class 1 integrons in flying foxes indicates bats have a role in the emergence of novel antibiotic resistance determinants.

摘要

越来越多的关于野生动物对抗菌药物耐药性的报告强调了采用一种“同一健康”方法来管理耐药性的重要性。我们研究了 1 类整合子的流行情况和多样性,1 类整合子是一种耐药性的遗传决定因素,存在于灰头狐蝠(一种属于翼手目大型果蝠物种)中。在野生动物康复设施中饲养的野生狐蝠(5.3%)和圈养狐蝠(41.2%)中都检测到了 1 类整合子。检测到了编码对氨基糖苷类、甲氧苄啶和β-内酰胺类以及 Qac 外排泵的耐药基因。整合子保守元件和基因盒阵列的分析表明,整合子的转移方向是从人类到狐蝠。检测到两个新的基因盒阵列(5'CS-qacH-aacA34-bla-3'CS 和 5'CS-qacF-3'CS)强烈表明,环境抗药性基因库中的基因是从环境抗药性基因库中获得的,并被整合到狐蝠微生物群中的 1 类整合子中。狐蝠中 1 类整合子的动态表明,蝙蝠在新型抗生素耐药决定因素的出现中发挥了作用。

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