Skip to main navigation Skip to search Skip to main content

mcrA sequencing reveals the role of basophilic methanogens in a cathodic methanogenic community

  • Weiwei Cai
  • , Wenzong Liu*
  • , Zhaojing Zhang
  • , Kai Feng
  • , Ge Ren
  • , Chuanliang Pu
  • , Haishu Sun
  • , Jiaqi Li
  • , Ye Deng
  • , Aijie Wang
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • CAS - Research Center for Eco-Environmental Sciences
  • Dalian University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Cathodic methanogenesis is a promising method for accelerating and stabilising bioenergy recovery in anaerobic processes. The change in composition of microbial (especially methanogenic) communities in response to an applied potential—and especially the associated pH gradient—is critical for achieving this goal, but is not well understood in cathodic biofilms. We found here that the pH-polarised region in the 2 mm surrounding the cathode ranged from 6.9 to 10.1, as determined using a pH microsensor; this substantially affected methane production rate as well as microbial community structure. Miseq sequencing data of a highly conserved region of the mcrA gene revealed a dramatic variation in alpha diversity of methanogens concentrated in electrode biofilms under the applied potential, and confirmed that the dominant microbes at the cathode were hydrogenotrophic methanogens (mostly basophilic Methanobacterium alcaliphilum). These results indicate that regional pH variation in the microenvironment surrounding the electrode is an ecological niche enriched with Methanobacterium.

Original languageEnglish
Pages (from-to)192-199
Number of pages8
JournalWater Research
Volume136
DOIs
StatePublished - 1 Jun 2018

Keywords

  • Bioelectrochemical
  • Cathode
  • Methanogenic community
  • mcrA
  • pH-gradient

Fingerprint

Dive into the research topics of 'mcrA sequencing reveals the role of basophilic methanogens in a cathodic methanogenic community'. Together they form a unique fingerprint.

Cite this