AI summary

100% confidence

BES research in electrode, bacteria. Abstract Electrochemically active bacteria (EAB) receive considerabl...

Generated by MESSAI extraction pipeline · review against source PDF

Extraction

Reported parameters

No extracted parameters yet — request AI extraction to compare this paper against literature distributions.

No 3D model is mapped to this paper yet. Parameter ranges above still place reported values on the literature distribution.

What they did

System
FUNDAMENTAL
Substrate
pure compound

What worked

No outcome metrics extracted yet.

Abstract

Abstract Electrochemically active bacteria (EAB) receive considerable attention for their utility in bioelectrochemical processes. Although electrode potentials are known to affect the metabolic activity of EAB, it is unclear whether EAB are able to sense and respond to electrode potentials. Here, we show that, in the presence of a high-potential electrode, a model EAB Shewanella oneidensis MR-1 can utilize NADH-dependent catabolic pathways and a background formate-dependent pathway to achieve high growth yield. We also show that an Arc regulatory system is involved in sensing electrode potentials and regulating the expression of catabolic genes, including those for NADH dehydrogenase. We suggest that these findings may facilitate the use of EAB in biotechnological processes and offer the molecular bases for their ecological strategies in natural habitats.

Keywords

Shewanella oneidensisCatabolismFormate dehydrogenaseBacteriaElectrodeMetabolic pathway

Identifiers

Journal
Nature Communications
Year
2018