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Characteristics and bacterial community dynamics during extracellular polymeric substance (EPS) degradation of cyanobacterial blooms

机译:细胞外聚合物物质(EPS)降解蓝藻绽放的特征和细菌群体动力学

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摘要

Extracellular polymeric substances (EPSs), which composed of different organic components, play an important role in the formation of mucilaginous cyanobacterial bloom. However, how the phylogeny of microbial community coupling with the degradation of EPS matrixes remains unclear. A better understanding of the dynamic process not only give insight into the carbon cycling in the phycosphere, but also provide a new approach for controlling the cyanobacteria bloom. In this study, fractionated EPSs were prepared as a carbon source to enrich different particle size microorganisms. Changes of organic components in EPSs and microbial communities in the degradation process were investigated using Fluorescence excitation and emission matrix (EEM) and Illumina sequencing. The results showed that it is the change of organic components in the degradation process that causes the microbial community to follow a certain succession law. Size-fractionated microorganisms exhibited different hydrolytic activities when interacting with macromolecules, but they did not present different phyloge-netic compositions. The changes of humic-like C1 and tryptophan-like C3 in EPSs were significantly correlated to the variations of microbial community composition and diversity. Tightly-bound EPSs (TB-EPSs) contained more low molecular single carbon compounds and were more easily utilized by more diverse microorganisms. Betaproteobacteria, Firmicute, Alphaproteobacteria, Sphingobacteria and Actinobacter were significantly correlated with the changes of organic maters through the humification process. Meanwhile, loosely-bound EPSs (LB-EPSs), which composed of more macromolecules, were more affiliated to a functional organized microbial community. When Gammaproteobacteria and Betaproteobacteria were involved in LB-EPS degradation as indicators, the poly-saccharide structures changed dramatically. And the content of some small molecules was briefly increased during the degradation process. Therefore, in order to prevent algal bloom from reducing cellular aggregation by decreasing viscous EPSs, specialized microbial communities should be considered in the phycosphere.
机译:由不同的有机组分组成的细胞外聚合物物质(EPS)在形成粘膜细菌绽放中起重要作用。然而,微生物群落与EPS基质的降解的微生物群落联接的系统发育仍不清楚。更好地理解动态过程不仅能够深入了解植际循环的碳循环,还提供了一种用于控制蓝藻绽放的新方法。在该研究中,将分馏的EPS制备为碳源,以富集不同的粒度微生物。使用荧光激发和发射基质(EEM)和illumina测序研究了降解过程中的EPS和微生物群落中有机成分的变化。结果表明,在降解过程中有机成分的变化,导致微生物群落遵循某种继任法。在与大分子相互作用时,尺寸分级的微生物表现出不同的水解活性,但它们没有呈现不同的Phyloge - 核算组合物。 EPS中腐殖液C1和色氨酸样C3的变化与微生物群落组成和多样性的变化显着相关。紧密结合的EPS(TB-EPS)含有更低的分子单碳化合物,并且通过更多样化的微生物更容易地利用。 BetapRoteobacteria,Froumicute,AlphaproTecacteria,Sphingobacteria和Actinobacter与通过腐殖过程的有机加热器的变化显着相关。同时,由更多大分子组成的松散 - 结合的EPS(LB-EPS)与功能性有组织的微生物群落更加相关。当伽血曲线杀菌和BetapRoteobacteria参与LB-EPS降解作为指标时,聚糖结构急剧变化。在降解过程中短暂地增加了一些小分子的含量。因此,为了防止通过降低粘性EPS来减少细胞聚集的藻类,应在植晶段中考虑专用的微生物社区。

著录项

  • 来源
    《Science of the total environment》 |2020年第15期|142309.1-142309.11|共11页
  • 作者单位

    School of Energy and Environment Anhui University of Technology Maanshan 243002 China State Key Laboratory of Lake Science and Environment Nanjing Institute of Geography and Limnology Chinese Academy of Sciences Nanjing 210008 China;

    Nanjing Forestry University Nanjing 210007 China;

    State Key Laboratory of Lake Science and Environment Nanjing Institute of Geography and Limnology Chinese Academy of Sciences Nanjing 210008 China;

    State Key Laboratory of Lake Science and Environment Nanjing Institute of Geography and Limnology Chinese Academy of Sciences Nanjing 210008 China;

    State Key Laboratory of Lake Science and Environment Nanjing Institute of Geography and Limnology Chinese Academy of Sciences Nanjing 210008 China;

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

    Microcystis bloom; Extracellular polymeric substances; Microbial degradation; Microbial community;

    机译:微囊杆菌绽放;细胞外聚合物物质;微生物降解;微生物群落;

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