作者
Andrew L Hook, James L Flewellen, Jean-Frédéric Dubern, Alessandro M Carabelli, Irwin M Zaid, Richard M Berry, Ricky D Wildman, Noah Russell, Paul Williams, Morgan R Alexander
发表日期
2019/10/29
期刊
MSystems
卷号
4
期号
5
页码范围
10.1128/msystems. 00390-19
出版商
American Society for Microbiology
简介
Bacteria sense chemicals, surfaces, and other cells and move toward some and away from others. Studying how single bacterial cells in a population move requires sophisticated tracking and imaging techniques. We have established quantitative methodology for label-free imaging and tracking of individual bacterial cells simultaneously within the bulk liquid and at solid-liquid interfaces by utilizing the imaging modes of digital holographic microscopy (DHM) in three dimensions (3D), differential interference contrast (DIC), and total internal reflectance microscopy (TIRM) in two dimensions (2D) combined with analysis protocols employing bespoke software. To exemplify and validate this methodology, we investigated the swimming behavior of a Pseudomonas aeruginosa wild-type strain and isogenic flagellar stator mutants (motAB and motCD) within the bulk liquid and at the surface at the single-cell and population …
引用总数
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