Skip to main navigation Skip to search Skip to main content

Bioupcycling Methane and CO2 for Succinate Production by an Engineered Type I Methanotrophic Bacterium

  • Weiting Wang
  • , Shuqi Guo
  • , Qianzi Hou
  • , Chenyue Zhang
  • , Zixi Gao
  • , Jingwen Zhou
  • , Qiang Fei
  • Xi'an Jiaotong University
  • Jiangnan University

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Methane, a byproduct of agricultural activities, has shown potential as a nonedible substrate for biomanufacturing. The production of succinate by a methanotrophic bacterium utilizing methane presents an innovative route for the sustainable synthesis of chemicals. In this study, Methylotuvimicrobium buryatense 5GB1S was genetically modified through the reconstruction of an artificial serine cycle to enable the bioconversion of both methane and CO2 into succinate. The 13C labeling analysis confirmed the CO2 fixing in M. buryatense 5GB1S, leading to a 46% improvement in carbon conversion efficiency and a 107% increase in succinate production compared to the wild-type strain. The transcriptome data on carbon metabolisms was assessed to guide future optimizations for strengthening the overall carbon flux from methane to succinate. Finally, the maximum succinate titer of 299.36 mg/L was achieved under oxygen-limited conditions in 3 L bioreactors, which resulted in the volumetric productivity of 199.60 mg/L/day, representing a 23-fold enhancement compared to the wild-type strain. This study offers a new strategy for upcycling greenhouse gases into succinate in a sustainable manner through methanotrophic-based biomanufacturing.

Original languageEnglish
Pages (from-to)24237-24245
Number of pages9
JournalJournal of Agricultural and Food Chemistry
Volume72
Issue number44
DOIs
StatePublished - 6 Nov 2024

Keywords

  • CO fixation
  • methane
  • methanotrophic bacterium
  • serine pathway
  • succinate

Fingerprint

Dive into the research topics of 'Bioupcycling Methane and CO2 for Succinate Production by an Engineered Type I Methanotrophic Bacterium'. Together they form a unique fingerprint.

Cite this