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Revised paradigm of aquatic biofilm formation facilitated by microgel transparent exopolymer particles

机译:微凝胶透明的外聚合物颗粒促进了水生生物膜形成的修订范式

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Transparent exopolymer particles (TEPs) are planktonic, organic microgels that are ubiquitous in aqueous environments. Increasing evidence indicates that TEPs play an active role in the process of aquatic biofilm formation. Frequently, TEPs are intensely colonized by bacteria and other microorganisms, thus serving as hot spots of intense microbial activity. We introduce the term "protobiofilm" to refer to TEPs with extensive microbial outgrowth and colonization. Such particles display most of the characteristics of developing biofilm, with the exception of being attached to a surface. In this study, coastal seawater was passed through custom-designed flow cells ' that enabled direct observation of TEPs and protobiofilm in the feedwater stream by bright-field and epifluorescence microscopy. Additionally, we could follow biofilm development on immersed surfaces inside the flow cells. Within minutes, we observed TEP and protobiofilm patches adhering to these surfaces. By 30 min, confo-cal laser-scanning microscopy (CLSM) revealed numerous patches of Con A and SYTO 9 staining structures covering the surfaces. Atomic force microscopy showed details of a thin, highly sticky, organic conditioning layer between these patches. Bright-field and epifluorescence microscopy and CLSM showed that biofilm development (observed until 24 h) was profoundly inhibited in flow cells with seawater pref iltered to remove most large TEPs and protobiofilm. We propose a revised paradigm for aquatic biofilm development that emphasizes the critical role of microgel particles such as TEPs and protobiofilm in facilitating this process. Recognition of the role of planktonic microgels in aquatic biofilm formation can have applied importance for the water industry.
机译:透明的外聚合物颗粒(TEP)是在水性环境中无处不在的浮游有机微凝胶。越来越多的证据表明,TEP在水生生物膜形成过程中起着积极作用。通常,TEP被细菌和其他微生物强烈地定居,因此成为具有强烈微生物活性的热点。我们引入术语“ protobiofilm”是指具有广泛的微生物生长和定植的TEP。除了附着在表面上,这些颗粒显示出生物膜发育的大多数特征。在这项研究中,沿海海水通过了定制设计的流通池,该流通池能够通过明场和落射荧光显微镜直接观察给水中的TEP和原生物膜。此外,我们可以跟踪流动池内部浸没表面上的生物膜显影情况。在几分钟之内,我们观察到TEP和原生生物膜斑块粘附在这些表面上。到30分钟时,共聚焦激光扫描显微镜(CLSM)发现了覆盖表面的大量Con A和SYTO 9染色结构斑块。原子力显微镜显示了这些斑块之间的薄的,高粘性的有机调理层的细节。明场和落射荧光显微镜以及CLSM表明,用海水过滤除去大部分大的TEP和原生物膜后,流动池中的生物膜发展(观察到24小时)受到了显着抑制。我们提出了水生生物膜发展的修订范式,强调了微凝胶颗粒(如TEP和原生生物膜)在促进这一过程中的关键作用。浮游微凝胶在水生生物膜形成中的作用的认识对于水工业具有重要意义。

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    Mina and Everard Goodman Faculty of Life Sciences Bar-Han University, Ramat Gan 52900, Israel;

    Mina and Everard Goodman Faculty of Life Sciences Bar-Han University, Ramat Gan 52900, Israel;

    Center for Nanotechnology and Advanced Materials, Bar-Han University, Ramat Gan 52900, Israel;

    Yigal Allon Kinneret Limnological Laboratory, Israel Oceanographic and Limnological Research, Migdal 14102, Israel;

  • 收录信息 美国《科学引文索引》(SCI);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
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  • 入库时间 2022-08-18 00:40:23

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