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Metagenomic analysis reveals the microbiome and resistome in migratory birds

机译:Metagenomic分析揭示了迁移鸟类中的微生物组和电阻

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BACKGROUND:Antibiotic-resistant pathogens pose high risks to human and animal health worldwide. In recent years, the role of gut microbiota as a reservoir of antibiotic resistance genes (ARGs) in humans and animals has been increasingly investigated. However, the structure and function of the gut bacterial community, as well as the ARGs they carry in migratory birds remain unknown.RESULTS:Here, we collected samples from migratory bird species and their associated environments and characterized their gut microbiomes and resistomes using shotgun metagenomic sequencing. We found that migratory birds vary greatly in gut bacterial composition but are similar in their microbiome metabolism and function. Birds from the same environment tend to harbor similar bacterial communities. In total, 1030 different ARGs (202 resistance types) conferring resistance to tetracycline, aminoglycoside, β-lactam, sulphonamide, chloramphenicol, macrolide-lincosamide-streptogramin (MLS), and quinolone are identified. Procrustes analysis indicated that microbial community structure is not correlated with the resistome in migratory birds. Moreover, metagenomic assembly-based host tracking revealed that most of the ARG-carrying contigs originate from Proteobacteria. Co-occurrence patterns revealed by network analysis showed that emrD, emrY, ANT(6)-Ia, and tetO, the hubs of ARG type network, are indicators of other co-occurring ARG types. Compared with the microbiomes and resistomes in the environment, migratory birds harbor a lower phylogenetic diversity but have more antibiotic resistance proteins. Interestingly, we found that the mcr-1 resistance gene is widespread among different birds, accounting for 50% of the total samples. Meanwhile, a large number of novel β-lactamase genes are also reconstructed from bird metagenomic assemblies based on fARGene software.CONCLUSIONS:Our study provides a comprehensive overview of the diversity and abundance of ARGs in migratory birds and highlights the possible role of migratory birds as ARG disseminators into the environment. Video abstract.
机译:背景:抗生素抗性病原体对全世界的人类和动物健康产生高风险。近年来,肠道微生物群作为人类和动物中抗生素抗性基因(Args)的储层的作用越来越多地研究。然而,肠道细菌群落的结构和功能以及他们携带迁徙鸟类的args仍然未知。结果:在这里,我们从候鸟物种及其相关环境中收集样品,并使用霰弹枪偏心组织的肠道微生物和电阻器测序。我们发现迁徙的鸟类在肠道细菌组合物中有很大差异,但在微生物组代谢和功能中具有相似。来自同一环境的鸟类倾向于含有类似的细菌社区。鉴定了总共1030种不同的Args(202种电阻类型)赋予四环素,氨基糖苷,β-内酰胺,磺酰胺,氯霉素,大氯化酰胺 - 酰胺 - 链图(MLS)和喹诺酮类抗性。促进分析表明微生物群落结构与迁徙鸟类中的电阻不相关。此外,基于偏心组件的宿主跟踪显示,大多数患有携带的葡萄糖源自植物。网络分析显示的共生成模式表明,EMRD,Emry,Ant(6)-ia和Teto,arg类型网络的集线器是其他共同发生的arg类型的指标。与环境中的微生物瘤和电阻相比,候鸟患有较低的系统发育多样性,但具有更高的抗生素抗性蛋白质。有趣的是,我们发现MCR-1抗性基因在不同的鸟类中普遍存在,占所有样品的50%。同时,还从基于Fargene软件重建了大量的新型β-内酰胺酶基因。结论:我们的研究提供了迁徙鸟类中args的多样性和丰富的全面概述,并突出了迁徙鸟类的可能作用arg传播者进入环境。视频摘要。

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