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OxyR regulates the oxidative stress response in Zymomonas mobilis during oxic growth and anoxic biofuel fermentation

Emma C Boismier, Magdalena M. Felczak, Kevin S. Myers, Michaela A. TerAvest

Applied and Environmental Microbiology | Aug 4, 2026

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How a fermentative bacterium, Zymomonas mobilis, experiences oxidative stress during anoxic biomass fermentation and identified genes important in this response is investigated and identified genes important in this response are identified.

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ABSTRACT The bacterium Zymomonas mobilis is widely studied for its potential as an industrial biofuel producer. Anoxic fermentation by Z. mobilis in lignocellulosic hydrolysate can generate bioethanol from renewable plant biomass. In this study, we deleted a gene from the Z. mobilis genome encoding a homolog of OxyR, a transcription factor that activates an oxidative stress response in bacteria to reduce reactive oxygen species (ROS). Deletion of this transcription factor inhibited growth of Z. mobilis in oxic, but not anoxic, conditions in laboratory media. A ROS probe revealed that the oxyR response is required to reduce intracellular ROS during oxic growth. Importantly for biofuel production, the absence of oxyR inhibited growth and delayed ethanol production during anoxic hydrolysate fermentation. To determine the source of oxidative stress in hydrolysates, we grew Δ oxyR in a synthetic hydrolysate containing known inhibitors found in hydrolysates. There was no growth defect in Δ oxyR in the synthetic hydrolysate, indicating that known inhibitory compounds are not the source of anoxic oxidative stress. We determined that ammonia-fiber expansion switchgrass hydrolysate contains significant peroxide concentrations. Addition of catalase to hydrolysate improves growth of both Δ oxyR and wild-type Z. mobilis in hydrolysate. This study uncovers an important source of stress to Z. mobilis during biofuel fermentation. IMPORTANCE Fermentation of non-food biomass is a promising avenue for sustainable production of fuels and chemicals, but several challenges currently limit the applicability of this technology. One major hurdle is that when biomass is deconstructed into a fermentable form, many byproducts are generated that inhibit microbial fermentation. Here, we investigated how a fermentative bacterium, Zymomonas mobilis , experiences oxidative stress during anoxic biomass fermentation and identified genes important in this response. These findings provide a better understanding of the stresses faced by Z. mobilis during biofuel production. Fully understanding the effects of hydrolysates on biofuel-producing microbes is crucial for optimizing production and making carbon-neutral fuel a reality.

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Emma C Boismier

first | Great Lakes Bioenergy Research Center

Magdalena M. Felczak

middle | Great Lakes Bioenergy Research Center | ORCID 0009-0002-7209-4221

Kevin S. Myers

middle | University of Wisconsin–Madison | ORCID 0000-0003-3302-3877

Michaela A. TerAvest

last | Great Lakes Bioenergy Research Center | ORCID 0000-0002-5435-3587

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BibTeX

@article{Boismier2026OxyR,
  title = {OxyR regulates the oxidative stress response in Zymomonas mobilis during oxic growth and anoxic biofuel fermentation},
  author = {Emma C Boismier and Magdalena M. Felczak and Kevin S. Myers and Michaela A. TerAvest},
  journal = {Applied and Environmental Microbiology},
  year = {2026},
  doi = {10.1128/aem.01044-26},
  url = {https://doi.org/10.1128/aem.01044-26}
}

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