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Temporal Dynamics of Antibiotic Resistome in the Plastisphere during Microbial Colonization

机译:微生物殖民化过程中抗生素抗生素抗生素的时间动态

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摘要

The increasing and simultaneous pollution of plastic debris and antibiotic resistance in aquatic environments makes plastisphere a great health concern. However, the development process of antibiotic resistome in the plastisphere is largely unknown, impeding risk assessment associated with plastics. Here, we profiled the temporal dynamics of antibiotic resistance genes (ARGs), mobile genetic elements (MGEs), and microbial composition in the plastisphere from initial microbial colonization to biofilm formation in urban water. A total of 82 ARGs, 12 MGEs, and 63 bacterial pathogens were detected in the plastisphere and categorized as the pioneering, intermediate, and persistent ones. The high number of five MGEs and six ARGs persistently detected in the whole microbial colonization process was regarded as a major concern because of their potential role in disseminating antibiotic resistance. In addition to genomic analysis, D20-Iabeled single-cell Raman spectroscopy was employed to interrogate the ecophysiology of plastisphere in a culture-independent way and demonstrated that the plastisphere was inherently more tolerant to antibiotics than bacterioplankton. Finally, by combining persistent MGEs, intensified colonization of pathogenic bacteria, increased tolerance to antibiotic, and potential trophic transfer into a holistic risk analysis, the plastisphere was indicated to constitute a hot spot to acquire and spread antibiotic resistance and impose a long-term risk to ecosystems and human health. These findings provide important insights into the antibiotic resistome and ecological risk of the plastisphere and highlight the necessity for comprehensive surveillance of plastisphere.
机译:水产环境中塑料碎片和抗生素抗性的增加和同时污染使得Plastisphere成为一个很大的健康问题。然而,塑体乳氏体抗生素抗性的开发过程主要是未知的,阻碍与塑料相关的风险评估。在这里,我们将抗生素抗性基因(Args),移动遗传元素(升降机)和微生物组合物中的临时动态分解为从初始微生物定殖至城市水中的生物膜形成中的Plastisphere中的微生物组合物。在塑体席体中检测到总共82次Args,12升起和63条细菌病原体,并作为开拓,中间和持久性的群体进行分类。由于其在传播抗生素抗性方面的潜在作用,在整个微生物殖民化过程中持续检测到的大量五个升迁和六个args被认为是主要问题。除了基因组分析之外,使用D20-IABELED单细胞拉曼光谱法以遵守培养的方式询问Plastisphere的生态学,并证明了Plastisphere对抗生素具有比菌药更高的耐受性。最后,通过组合持续的升降升降率,致病细菌的加剧定植,对抗生素的耐受性增加以及潜在的营养性转移到整体风险分析中,塑性裂片物被指出,占养殖和传播抗生素抗性的热点,并施加长期风险对生态系统和人类健康。这些发现提供了对抗生素的抗生素和生态风险的重要见解,并突出了全面监测的必要性。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第18期|11322-11332|共11页
  • 作者单位

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China University of Chinese Academy of Sciences Beijing 100049 China;

    Faculty of Veterinary and Agricultural Sciences The University of Melbourne Parkville Victoria 3010 Australia;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment and State Key Laboratory of Urban and Regional Ecology Research Center jor Eco-Environmental Sciences Chinese Academy of Sciences Xiamen 361021 China;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:37:01

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