Electrical signalling beyond diffusion-limited microbial interactions.
- Open access
Electrical signalling extends microbial interactions beyond diffusion limits, with a measurable "handover distance" that links electrophysiology to ecological communication.
- Why it matters: Understanding microbial communication is crucial for revealing how microbes coordinate and adapt in complex environments, yet current models focus mainly on chemical signals.
- What they did: The authors explore ion-driven electrical signalling and extracellular electron transport as distinct mechanisms mediating microbial interactions, introducing the concept of handover distance as a measurable interaction range.
- The result: This work highlights bioelectricity as an underrecognized but vital component of microbial ecology, enabling interactions over spatial scales beyond chemical diffusion and opening new avenues for ecological research.