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Clostridium pasteurianum

◑ Environmental
Sequenced
Public genome assembly available

Clostridium pasteurianum is an anaerobic, nitrogen-fixing soil bacterium that has been studied primarily in the context of microbiology fundamentals and industrial biotechnology — including hydrogen production, ferredoxin biochemistry, and substrate fermentation. Indexed research spans several decades of basic biochemistry (iron-sulfur proteins, hydrogenase enzymes, nitrogen fixation) and more recent work on biofuel-relevant fermentation pathways. This organism is not a conventional probiotic and has no indexed human health or clinical evidence; it is a research-model organism for anaerobic physiology and industrial fermentation rather than a candidate for human supplementation.

Where it's been studied

Share of this strain's 7 body-system-tagged papers that concern each system. Research coverage, not measured effect.

Symptoms in the research

Share of this strain's 1 symptom-tagged papers that mention each symptom or condition. Research coverage, not evidence of benefit.

Research

155 papers reference this strain in the probiotic database.

Match confidence
2026 IN_VITRO
Co-production of high yield bio-hydrogen and bio-alcohol by Clostridium species via dark fermentation using sugar beet raw molasses
· Discover Applied Sciences
2026 IN_VITRO
Quantitative Real‐Time Polymerase Chain Reaction (qPCR) Analysis as a Decision Support Tool for High‐Rate Biohydrogen Production Under Process Disturbance
· International Journal of Energy Research
2025 IN_VITRO
Defined and refined: development of a minimal medium for Clostridium pasteurianum
· Applied Microbiology and Biotechnology
2025 IN_VITRO
A Nanobiocatalyst‐Driven Hybrid System for Efficient and Sustainable Hydrogen Production via Electron Flow Optimization
· Advanced Materials
2025 WGS
A Consecutive Genome Engineering Method Reveals a New Phenotype and Regulation of Glucose and Glycerol Utilization in Clostridium Pasteurianum
· Engineering in Life Sciences
2025 IN_VITRO
Influence of Different Substrate and Microorganism Concentrations on Butyric Acid-Derived Biohydrogen Production
· Processes
2024 IN_VITRO
Influence of fumarate on interspecies electron transfer and the metabolic shift induced in Clostridium pasteurianum by Geobacter sulfurreducens
· Journal of Applied Microbiology
2024 OTHER
Bioaugmentation with Clostridium pasteurianum for high-yield continuous bio-hydrogen production in a dynamic membrane bioreactor
· Chemical Engineering Journal
2023 REVIEW
Clostridium pasteurianum Bioprocessing: Pioneering Circular Bioeconomy Advancements through Sustainable Resource Utilization
·
2023 IN_VITRO
Dataset of scientific article "Variability in Arsenic Methylation Efficiency across Aerobic and Anaerobic Microorganisms"
· Zenodo (CERN European Organization for Nuclear Research)
2022 IN_VITRO
Control of redox potential in a novel continuous bioelectrochemical system led to remarkable metabolic and energetic responses of Clostridium pasteurianum grown on glycerol
· Microbial Cell Factories
2021 OTHER
Mechanisms underlying Clostridium pasteurianum’s metabolic shift when grown with Geobacter sulfurreducens
· Applied Microbiology and Biotechnology
2020 IN_VITRO
Increased Selectivity for Butanol in Clostridium Pasteurianum Fermentations via Butyric Acid Addition or Dual Feedstock Strategy
· Fermentation
2020 IN_VITRO
Self-Synchronized Oscillatory Metabolism of Clostridium pasteurianum in Continuous Culture
· Processes
2020 IN_VITRO
Introduction of glycine synthase enables uptake of exogenous formate and strongly impacts the metabolism in Clostridium pasteurianum
· Biotechnology and Bioengineering
2020 IN_VITRO
Improved Fermentation Design and Screening Devices for Biobutanol Production
· Scholarship@Western (Western University)
2019 IN_VITRO
Determining butanol inhibition kinetics on the growth of Clostridium pasteurianum based on continuous operation and pulse substrate additions
· Journal of Chemical Technology & Biotechnology
2019 IN_VITRO
Enhanced electron transfer of different mediators for strictly opposite shifting of metabolism in Clostridium pasteurianum grown on glycerol in a new electrochemical bioreactor
· Biotechnology and Bioengineering
2019 IN_VITRO
Co-immobilization of Nano-Metal and C. pasteurianum for Dark Fermentation Anaerobic Hydrogen Production
· International Journal of Environmental Science and Development
2017 IN_VITRO
Metabolic and proteomic analyses of product selectivity and redox regulation in Clostridium pasteurianum grown on glycerol under varied iron availability
· Microbial Cell Factories
Browse all 155 papers →

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