{{'Search' | translate}}
 

Inverted microscope equipped with a 100 W halogen tungsten lamp

Company: Nikon
Catalog#: Ellipse Ti-U
Bio-protocol()
Company-protocol()
Other protocol()

Long-distance Transport in Bacterial Swarms Revealed by Single Nanoparticle Tracking
Author:
Date:
2020-11-05
[Abstract]  

During swarming, high density flagella-driven bacteria migrate collectively in a swirling pattern on wet agar surfaces, immersed in a thin viscous fluid layer called “swarm fluid”. Though the fluid environment has essential role in the emergence of swarming behavior, the microscopic mechanisms of it in mediating the cooperation of bacteria populations are not fully understood. Here, instead of micro-sized tracers used in previous research, we use gold nanorods as single particle tracers to probe the dynamics of the swarm fluid. This protocol includes five major parts: (1) the culture of swarming bacterial colony; (2) the preparations of gold nanorod tracers and the micro-spraying technique which are used to put the nanotracers into the upper fluid of bacterial swarms; (3)

...
[摘要]  [摘要]在群体聚集期间,高密度的鞭毛驱动细菌以漩涡状在湿的琼脂表面集体迁移,并浸入称为“群液”的稀薄粘性液层中。尽管流体环境在群居行为的出现中起着至关重要的作用,但其在介导细菌种群合作方面的微观机制尚不完全清楚。在这里,代替以前的研究中使用的微型示踪剂,我们使用金纳米棒作为单颗粒示踪剂来探测群流体的动力学。该方案包括五个主要部分:(1)大量细菌菌落的培养;(2)金纳米棒示踪剂的制备和微喷涂技术被用来放nanotracers进入细菌群的上层液体;(3)成像与跟踪;(四)其他必要的对照实验;(5)数据分析与物理模型拟合。通过这种方法,纳米尺寸的示踪剂可以在运动细胞上方长距离移动,而不会与细菌体直接碰撞。这样,可以以高时空分辨率跟踪群流体的微观动力学。此外,对多粒子轨迹的综合分析提供了流体动力学的系统可视化。该方法有望探测其他天然或人工活性物质系统的流体动力学。

[背景]近来,集体米的细菌otions已经吸引了很多关注的活性物质/流体领域(Rabani等,2013;张,H 。等,2010;马尔凯蒂。等,2013) ...

Comments