Effects of simulated microgravity on current generation of electrochemically active bacteria: Insights from case-control study using random positioning machine

Yue Yi, Ziyue Zhao, Bo Cao, Xuemei Yi, Zhipeng Mao, Fan Zha, Zhe Zhang, Hong Liu*, Aiqin Luo

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

Electrochemically active bacteria (EAB) exhibit promising prospects for space exploration and life support systems. However, the effects of the space environment on EAB are unclear. In this study, the effects of simulated microgravity on the current generation of mixed-culture EAB were illustrated, and the underlying mechanism was elucidated. The results demonstrated that the electrochemical activity of mixed-culture EAB was enhanced, which was mainly due to the enrichment of Geobacter and the increase in EAB biomass. Additionally, the genes and proteins of the biofilm changed obviously under simulated microgravity conditions, including: I) genes related to signal transfer, II) genes related to cell wall synthesis, and III) genes related to riboflavin synthesis. This study first revealed the enrichment in EAB abundance, the increase in EAB biomass, and the promotion of current generation under simulated microgravity.

Original languageEnglish
Article number130618
JournalBioresource Technology
Volume399
DOIs
Publication statusPublished - May 2024

Keywords

  • Current generation
  • Exoelectrogens
  • Extracellular electron transfer
  • Microbial community
  • Microbial fuel cell

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