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分散剂对油滴细菌定殖的影响:一种微流控方法。

Effect of dispersants on bacterial colonization of oil droplets: A microfluidic approach.

作者信息

Hickl Vincent, Juarez Gabriel

机构信息

Department of Physics, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Mar Pollut Bull. 2022 May;178:113645. doi: 10.1016/j.marpolbul.2022.113645. Epub 2022 Apr 13.

Abstract

Bacteria biodegradation of immiscible oil requires cell-droplet encounters, surface attachment, and hydrocarbon metabolism. Chemical dispersants are applied to oil spills to reduce the mean dispersed droplet size, thereby increasing the available surface area for attachment, in attempts to facilitate bacterial biodegradation. However, their effectiveness remains contentious as studies have shown that dispersants can inhibit, enhance, or have no effect on biodegradation. Therefore, questions remain on whether dispersants affect surface attachment or cell viability. Here, using microfluidics and time-lapse microscopy, we directly observe the attachment and growth of the marine bacterium, Alcanivorax borkumensis, on stationary crude oil droplets (5 μm < R < 150 μm) in the presence of Corexit 9500. We show that the average colonization time, or the time comprised of encounters, attachment, and growth, is dependent on droplet size and primarily driven by diffusive encounters. Our results suggest that dispersants do not inhibit or enhance these biophysical processes.

摘要

不混溶油的细菌生物降解需要细胞与液滴相遇、表面附着以及碳氢化合物代谢。化学分散剂被用于应对石油泄漏,以减小平均分散液滴尺寸,从而增加可用于附着的表面积,试图促进细菌生物降解。然而,其有效性仍存在争议,因为研究表明分散剂可能抑制、增强生物降解或对其没有影响。因此,关于分散剂是否影响表面附着或细胞活力仍存在疑问。在此,我们使用微流体技术和延时显微镜,直接观察了在科雷希特9500存在的情况下,海洋细菌博氏嗜油菌在静止原油液滴(5μm < R < 150μm)上的附着和生长。我们发现,平均定殖时间,即由相遇、附着和生长组成的时间,取决于液滴大小,并且主要由扩散相遇驱动。我们的结果表明,分散剂不会抑制或增强这些生物物理过程。

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