蜂群(蜜蜂)
趋化性
大肠杆菌
随机游动
群体行为
生物
微生物学
生态学
遗传学
基因
数学
统计
受体
作者
Jonathan D. Partridge,Nguyen T. Q. Nhu,Y. Dufour,Rasika M. Harshey
出处
期刊:MBio
[American Society for Microbiology]
日期:2019-03-18
卷期号:10 (2)
被引量:56
标识
DOI:10.1128/mbio.00316-19
摘要
The fundamental motile behavior of E. coli is a random walk, where straight “runs” are punctuated by “tumbles.” This behavior, conferred by the chemotaxis signaling system, is used to track chemical gradients in liquid. Our study results show that when migrating collectively on surfaces, E. coli modifies its chemosensory physiology to decrease its tumble bias (and hence to increase run durations) by post-transcriptional changes that alter the levels of a key signaling protein. We speculate that the low tumble bias may contribute to the observed Lévy walk (LW) trajectories within the swarm, where run durations have a power law distribution. In animals, LW patterns are hypothesized to maximize searches in unpredictable environments. Swarming bacteria face several challenges while moving collectively over a surface—maintaining cohesion, overcoming constraints imposed by a physical substrate, searching for nutrients as a group, and surviving lethal levels of antimicrobials. The altered chemosensory behavior that we describe in this report may help with these challenges.
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