作者
Rosa Martinez-Corral, Jintao Liu, Arthur Prindle, Gürol M Süel, Jordi Garcia-Ojalvo
发表日期
2019/6/10
期刊
Philosophical Transactions of the Royal Society B
卷号
374
期号
1774
页码范围
20180382
出版商
The Royal Society
简介
Information processing in the mammalian brain relies on a careful regulation of the membrane potential dynamics of its constituent neurons, which propagates across the neuronal tissue via electrical signalling. We recently reported the existence of electrical signalling in a much simpler organism, the bacterium Bacillus subtilis. In dense bacterial communities known as biofilms, nutrient-deprived B. subtilis cells in the interior of the colony use electrical communication to transmit stress signals to the periphery, which interfere with the growth of peripheral cells and reduce nutrient consumption, thereby relieving stress from the interior. Here, we explicitly address the interplay between metabolism and electrophysiology in bacterial biofilms, by introducing a spatially extended mathematical model that combines the metabolic and electrical components of the phenomenon in a discretized reaction–diffusion scheme. The …
引用总数
20192020202120222023202411315141110
学术搜索中的文章
R Martinez-Corral, J Liu, A Prindle, GM Süel… - Philosophical Transactions of the Royal Society B, 2019