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Migratory birds-one major source of environmental antibiotic resistance around Qinghai Lake, China

机译:迁徙鸟 - 中国青海湖周边环境抗生素耐药源

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摘要

Migratory birds are potential transmitters of bacterial antibiotic resistance. However, their role in the environmental dissemination of bacterial antibiotic resistance and the extent of their impact on the environment are not yet clear. Qinghai Lake is one of the most important breeding and stopover ground for the migratory birds along the Central Asian Flyway. Here, we investigated the bacterial antibiotic resistance in the environment and among the migratory birds around the lake. The results of culture-based analysis of bacterial antibiotic resistance, quantitative PCR and metagenomic sequencing indicate that migratory birds are one major source of bacterial antibiotic resistance in the environment around Qinghai Lake. Network analysis reveals the co-occurrence patterns of antibiotic resistance genes (ARGs) and bacterial genera. Genetic co-localization analysis suggests high co-selection potential (with incidence of 35.8%) among different ARGs, but limited linkage (with incidence of only 3.7%) between ARGs and biocide/metal resistance genes (BMRGs). The high genetic linkage between ARGs and mobile genetic elements (MGEs) is still largely confined to the bacterial community in migratory birds (accounting for 96.0% of sequencing reads of MGE-linked ARGs), which indicates limited horizontal transfer of ARGs to the environment. Nevertheless, the antibiotic resistance determinants carried by migratory birds and their specific genetic properties (high co-selection and mobility potential of the ARGs) remind us that the role of migratory birds in the environmental dissemination of bacterial antibiotic resistance deserves more attention.
机译:迁徙鸟类是细菌抗生素抗性的潜在发射器。然而,它们在细菌抗生素抗性环境传播中的作用以及它们对环境的影响程度尚不清楚。青海湖是沿着中亚飞行道的迁徙鸟类最重要的繁殖和中断地面之一。在这里,我们研究了环境中的细菌抗生素抗性和湖泊周围的候鸟。基于培养的细菌抗生素抗性分析结果,定量PCR和偏见测序表明,迁徙的鸟类是青海湖周围环境中细菌抗生素抗性的一个主要来源。网络分析揭示了抗生素抗性基因(ARGS)和细菌属的共生成模式。遗传共同定位分析表明,不同args之间的共同选择潜力(发病率为35.8%),但在Args和杀生物剂/金属抗性基因(BMRG)之间的连杆有限(仅有3.7%)。 Args和移动遗传元素(MGE)之间的高遗传联系仍然主要限于迁徙鸟类中的细菌群落(占MGE链接args的测序读数的96.0%),这表明args对环境的水平转移有限。然而,候鸟携带的抗生素抗性决定因素及其特定的遗传性质(args的高共同选择和流动性潜力)提醒我们迁徙鸟类在细菌抗生素抗性环境传播中的作用值得更加关注。

著录项

  • 来源
    《Science of the total environment》 |2020年第15期|139758.1-139758.11|共11页
  • 作者单位

    Department of Pharmaceutical & Biological Engineering School of Chemical Engineering Sichuan University Chengdu 610065 China;

    Department of Pharmaceutical & Biological Engineering School of Chemical Engineering Sichuan University Chengdu 610065 China;

    Tianjin Academy of Eco-Environment Sciences Tianjin 300191 China;

    Department of Pharmaceutical & Biological Engineering School of Chemical Engineering Sichuan University Chengdu 610065 China;

    Department of Pharmaceutical & Biological Engineering School of Chemical Engineering Sichuan University Chengdu 610065 China;

    Department of Pharmaceutical & Biological Engineering School of Chemical Engineering Sichuan University Chengdu 610065 China;

    Department of Pharmaceutical & Biological Engineering School of Chemical Engineering Sichuan University Chengdu 610065 China;

    Department of Pharmaceutical & Biological Engineering School of Chemical Engineering Sichuan University Chengdu 610065 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antibiotic resistance gene; Migratory birds; Environmental dissemination; Biocide/metal resistance gene; Mobile genetic element; Horizontal gene transfer;

    机译:抗生素抗性基因;迁徙鸟类;环境传播;杀生物剂/金属抗性基因;移动遗传元素;水平基因转移;

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