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Direct measurement of the aerotactic response in a bacterial suspension
Physical Review E ( IF 2.2 ) Pub Date : 2022-09-15 , DOI: 10.1103/physreve.106.034404
J Bouvard 1 , C Douarche 1 , P Mergaert 2 , H Auradou 1 , F Moisy 1
Affiliation  

Aerotaxis is the ability of motile cells to navigate toward oxygen. A key question is the dependence of the aerotactic velocity with the local oxygen concentration c. Here we combine simultaneous bacteria tracking and local oxygen concentration measurements using Ruthenium encapsulated in micelles to characterize the aerotactic response of Burkholderia contaminans, a motile bacterium ubiquitous in the environment. In our experiments, an oxygen gradient is produced by the bacterial respiration in a sealed glass capillary permeable to oxygen at one end, producing a bacterial band traveling toward the oxygen source. We compute the aerotactic response χ(c) both at the population scale, from the drift velocity in the bacterial band, and at the bacterial scale, from the angular modulation of the run times. Both methods are consistent with a power-law χc2, in good agreement with existing models based on the biochemistry of bacterial membrane receptors.

中文翻译:

直接测量细菌悬浮液中的气动响应

Aerotaxis 是运动细胞向氧气导航的能力。一个关键问题是气动速度与局部氧浓度的相关性C. 在这里,我们使用包封在胶束中的钌结合同步细菌跟踪和局部氧浓度测量来表征环境中普遍存在的运动细菌伯克霍尔德菌的气动反应。在我们的实验中,氧气梯度是由一端可渗透氧气的密封玻璃毛细管中的细菌呼吸产生的,从而产生一条向氧气源移动的细菌带。我们计算气动响应χ(C)在种群规模上,来自细菌带中的漂移速度,在细菌规模上,来自运行时间的角度调制。两种方法都符合幂律χC-2,与基于细菌膜受体生物化学的现有模型非常一致。
更新日期:2022-09-16
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