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A subcellular level study of copper speciation reveals the synergistic mechanism of microbial cells and EPS involved in copper binding in bacterial biofilms

机译:铜质形态的亚细胞水​​平研究揭示了微生物细胞和铜结合中的微生物细胞和EPS在细菌生物膜中的协同机制

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摘要

The synergistic cooperation of microbial cells and their extracellular polymeric substances (EPS) in biofilms is critical for the biofilm's resistance to heavy metals and the migration and transformation of heavy metals. However, the effects of different components of biofilms have not been fully understood. In this study, the spatial distribution and speciation of copper in the colloidal EPS, capsular EPS, cell walls and membranes, and intracellular fraction of unsaturated Pseudomonas putida (P. putida) CZ1 biofilms were fully determined at the subcellular level. It was found that 60-67% of copper was located in the extracellular fraction of biofilms, with 44.7-42.3% in the capsular EPS. In addition, there was 15.5-20.1% and 17.2-21.2% of copper found in the cell walls and membranes or the intracellular fraction, respectively. Moreover, an X-ray absorption fine structure spectra analysis revealed that copper was primarily bound by carboxyl-, phosphate-, and hydrosulfide-like ligands within the extracellular polymeric matrix, cell walls and membranes, and intracellular fraction, respectively. In addition, macromolecule quantification, fourier-transform infrared spectroscopy spectra and sulfur K-edge x-ray absorption near edge structure analysis further showed the carboxyl-rich acidic polysaccharides in EPS, phospholipids in cell walls and cell membranes, and thiol-rich intracellular proteins were involved in binding of copper in the different components of biofilm. The full understanding of the distribution and chemical species of heavy metals in biofilms not only promotes a deep understanding of the interaction mechanisms between biofilms and heavy metals, but also contributes to the development of effective biofilm-based heavy metal pollution remediation technologies. (c) 2020 Elsevier Ltd. All rights reserved.
机译:生物膜中微生物细胞及其细胞外聚合物物质(EPS)的协同合作对于生物膜对重金属的抗性和重金属的迁移和转化至关重要。然而,生物膜不同成分的影响尚未得到完全理解。在本研究中,在亚细胞水平上完全确定胶体EPS,胶囊EPS,胶囊,细胞壁和膜中铜中铜的空间分布和形状,以及不饱和假单胞菌(P. PIDIDA)CZ1 BIOFILMS的细胞内分数。发现60-67%的铜位于生物膜的细胞外分数中,囊囊中的44.7-42.3%。此外,在细胞壁和膜中发现的铜和17.2-21.2%分别存在15.5-20.1%和17.2-21.2%。此外,X射线吸收细结构光谱分析显示,铜主要通过细胞外聚合物基质,细胞壁和膜和细胞内馏分内的羧基,磷酸盐和氢硫化物样配体的结合。此外,傅立起的量化,傅立叶变换红外光谱光谱和硫k缘X射线吸收附近的边缘结构分析进一步显示了EPS,细胞壁和细胞膜中的磷脂中富含羧基的酸性多糖,以及富含硫醇的细胞内蛋白质参与生物膜的不同组分的铜的结合。全面了解生物膜中重金属的分布和化学物质不仅促进了对生物膜和重金属之间的相互作用机制的深刻理解,而且有助于开发有效的生物膜的重金属污染修复技术。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2020年第1期|114485.1-114485.10|共10页
  • 作者单位

    Huaqiao Univ Coll Chem Engn Dept Environm Sci & Engn Xiamen 361021 Fujian Peoples R China;

    Xiamen Univ Affiliated Hosp 1 Xiamen 361003 Peoples R China;

    Chinese Acad Sci Suzhou Inst Nanotech & Nanobion Div Nanobiomed Suzhou 215123 Peoples R China|Zhejiang Univ Dept Environm Engn Hangzhou 310058 Peoples R China;

    Chinese Acad Sci Suzhou Inst Nanotech & Nanobion Div Nanobiomed Suzhou 215123 Peoples R China|Zhejiang Univ Dept Environm Engn Hangzhou 310058 Peoples R China;

    Zhejiang Univ Dept Environm Engn Hangzhou 310058 Peoples R 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

    Copper; EPS; Speciation; Subcellular fractionation; Unsaturated biofilm;

    机译:铜;EPS;形态;亚细胞分级;不饱和生物膜;

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